Showing posts sorted by relevance for query space exploration. Sort by date Show all posts
Showing posts sorted by relevance for query space exploration. Sort by date Show all posts

Sunday, April 15, 2018

The Intellectual Case for Manned Space Exploration



Scientists are sometimes dismissive of manned* spaced exploration. They think it is a waste of money and effort, often just an exercise in hubristic national chauvinism rather than a scientifically legitimate enterprise. I’ve heard several astronomers and astrophysicists complain about the public fascination with putting people into space. Much better to send the robots, they say. The robots will collect all the relevant data, perform the key experiments, and transmit the results back to Earth. We can interpret and understand from our the comfort of our homes.

Ian Crawford is an exception to this. He is a scientist and a passionate advocate of manned space exploration. What’s more, he is an advocate for largely intellectual, and specifically scientific reasons. He has written many papers over the years setting out his stall. In this post, I want to analyse just one of them, ‘Avoiding Intellectual Stagnation: The Starship as an Expander of Minds’, which appeared in the Journal of the British Interplanetary Society in 2014.

I am primarily interested in the structure of Crawford’s argument. I’ll start by clarifying this structure, particularly the motivating premise (his moral/axiological principle), and then I’ll describe the various sub-arguments he adduces to support his case for space exploration.


1. The Motivating Premise: The Need for Dynamic Stabilism
Arguments for manned space exploration typically have a simple, three-part structure. They start with a motivating premise. This will usually be axiological/deontological in nature. In other words, it will stipulate some duty or value that is important/worthwhile. They will then proceed to a minor premise stating that this duty/value can be satisfied through space exploration. In other words, they will draw some causal link between the project of space exploration and the satisfaction of the duty/value. How close a causal link is open to debate. The strongest case for space exploration will, obviously, suggest that there is some necessary and exclusive causal link between the two. Weaker cases will suggest that there is just some link between the two and thus that space exploration is one of perhaps a number of ways of satisfying the duty/value.

This suggests that the following captures the general structure of all arguments for space exploration:

Motivating Premise: It is important/valuable that we do X; or, it is obligatory that we do X

Causal Premise: Manned space exploration will enable us to do X (or is the only thing that will enable us to do X).

Conclusion: Therefore, it is important/obligatory for us to engage in manned space exploration.

I have looked at a versions of this argument that proceed from a deontological motivating premise previously. Crawford’s argument is different because it is axiological in nature. I don’t read him as saying that we have a duty to explore space, but, rather, that it would be a good thing if we did. It would make our lives go better, and fill them with more meaning and flourishing, if we were to proceed with an ambitious project of manned space exploration.

Why is this? Crawford appeals to the value of an ‘open’ future. In this, he takes his cue from the work of the political theorist Francis Fukuyama. Back in the late 1980s, after the fall of the Berlin Wall and before the imminent collapse of communism, Fukuyama wrote a famous essay titled ‘The End of History’. Inspired by Kant and Hegel, Fukuyama argued that the end of the conflict between liberal democratic capitalism and communism heralded a stabilisation point in history. There would be no more grand ideological conflicts over the best way to live. There would just be practical problems to sort through. This would be good insofar as it called a halt to costly conflicts, but Fukuyama was ambivalent about the ultimate effects of this stabilisation, suggesting that the absence of ideological conflict might sap our lives of meaning:

The end of history will be a very sad time. The struggle for recognition, the willingness to risk one's life for a purely abstract goal, the worldwide ideological struggle that called forth daring, courage, imagination, and idealism, will be replaced by economic calculation, the endless solving of technical problems, environmental concerns, and the satisfaction of sophisticated consumer demands. In the post-historical period there will be neither art nor philosophy, just the perpetual caretaking of the museum of human history. 
(Fukuyama 1989)

As someone whose political philosophy is rooted more in the tradition of Hobbes than Hegel I find this quote somewhat ironic. If Hobbes is to be believed, an endless struggle or conflict is a ‘very sad’ thing too. In the extreme, it leads to the state of nature — the war of all against all — in which there is no place for beauty, art and other civilisational virtues. Caretaking the museum of history sounds like a relief after that. So there is presumably some desirable median, between the extreme of endless conflict and perpetual idleness, in which humans can flourish. Perhaps the key is to find the right mix of stability and struggle? If we could call a halt to conflicts over land and political ideology, and struggle instead towards some grand intellectual project, that would seem to be preferable.

And that’s exactly what Crawford urges. His motivating axiological premise holds that an ideal human society is one in which there is both stability and dynamism. More precisely, he argues that the ideal situation is one in which we have achieved relative peace between ourselves, but in which our future is still ‘open’ — i.e. we are not simply caretaking the museum of past achievements. His claim then is that an ambitious project of manned space exploration is the way to do this because of the intellectual challenges and virtues it will promote.

All of which means that Crawford’s case for manned space exploration can be set out like this:


  • (1) It is important/good for us to live in a stable and dynamic society, i.e. one in which our future remains open.

  • (2) Embarking upon an ambitious project of manned space exploration is one way (maybe the best way) in which to maintain an open future.

  • (3) Therefore, it is important/good for us to engage in an ambitious project of manned space exploration.



I’ll say no more about the motivating premise from here on out. I find it persuasive, but I admit that I’m not sure that I can explain why. I think some dynamism and unpredictability is a good thing, provided it is of the right type. Some forms of stability and repetition are good: I enjoy not having to struggle to find food, clothing and shelter. But some struggle is good too because it gives direction and purpose to life, and allows for a sense of achievement and fulfillment. On top of this, there are some intrinsic and instrumental goods associated with struggle. Curing cancer, for example, would involve a lot of struggle but would bring with it a number of intrinsic and instrumental goods, not least of which would be a massive reduction in suffering and hardship. The idea that struggle brings purpose does not have to be a mystical or religious notion, but beyond what I have said I am not convinced that I could say more to defend this idea that it plays an essential part in the good life.


2. The Intellectual Case for Space Exploration: Science, Art and Philosophy
If we set premise (1) to the side, premise (2) becomes the obvious focus of attention. There are a couple of preliminary things to be said about this premise. First, note how, in my formulation, it does not claim that there is a necessary and exclusive causal link between manned space exploration and the goal of maintaining an open future. This is consistent with something that I previously wrote about ‘frontierism’ and space exploration, in which I claimed that there are other ‘spaces’ to explore that could help us to maintain an open future. I also think it is consistent with what Crawford writes, but I do get the impression that he thinks manned space exploration might be the best way in which to maintain an open future, hence why I have added the brackets. The second preliminary comment is simply to note that the goal of maintaining an ‘open future’ is to be understood as shorthand for maintaining some kind of desirable struggle into the future, i.e. avoiding excessive predictability and listlessness. Crawford thinks that an intellectual struggle is the thing we should try to maintain. He does this partly for instrumental reasons but, more importantly, for intrinsic reasons: he thinks there are goods directly associated with and constituted by intellectual progress that are worth achieving.

So how does space exploration enable intellectual struggle and progress? Crawford makes three arguments. The first is that it will enable new forms of scientific investigation and progress. This is probably Crawford’s most famous argument, and he has defended it in a number of papers over the years. In the paper I’m looking at, he offers a brief precis of his position. His claim is partly based on history — space exploration has enabled scientific advances in the past — and partly based on plausible predictions of what would be possible if we did journey through space. He identifies four types of scientific inquiry that would be made possible by this: (i) physical and astrophysical studies conducted using spaceships as observing platforms; (ii) astrophysical studies of the wide variety of stars and their circumstellar environments; (iii) geological (etc) studies of planetary bodies and (iv) astrobiological and exobiological studies of habitable planets. In response to the ‘why not let the robots do all this?’- criticism, he argues that in situ observation and measurement is going to be far better in many cases, and essential in some, particularly in the search for life on other planets (we cannot penetrate the atmospheres of such planets from a distance). That said, one has to wonder whether this is, to some extent, contingent on current forms and understandings of robotic technology. I have argued elsewhere that creating ‘artificial’ robotic offspring might be the best way to realise the dream of interstellar exploration. This quibble to the side, I do think that Crawford is right in thinking that space exploration would give us a practically limitless frontier of for scientific investigation, which would surely stave off some of the stagnation that he fears.

Crawford’s intellectual case for space exploration doesn’t rest on science alone. His second argument for the intellectual vitality of space exploration looks at its impact on artistic expression. Crawford is a fan of Karl Popper’s ‘three-world’ theory. According to this theory, humans sit at the intersection of three worlds: (a) World One, which is the world of physical objects and events; (b) World Two, which is the world of mental states and events and (c) World Three, which is the world of human knowledge (i.e. theories, concepts, models of reality etc). The ‘worlds’ interact with and relate to one another through a series of feedback loops. Crawford argues that art belongs to World Three (the world of human representations) but is an expression of human subjectivity (World Two) that results from human observations/responses to the physical world (World One) and their place within it. What’s more, artistic expression is made possible when human subjectivity (World Two) speaks through the manipulation of physical objects and materials (World One) to create new artefacts and representations (World Three).

Now, you may of course be wondering: where does space exploration fit into this complex web of feedback loops? The argument that Crawford makes is that space exploration will position humans within new physical ‘landscapes’, which will prompt new observations and subjective reactions, which will in turn prompt new forms of artistic expression. He also argues that it will lead to a ‘cosmicizing’ of the human mind — i.e. an enlargement of perspective — which will add a new dimension to our artistic endeavours. Even without Popper’s theoretical overlay, this argument makes a certain amount of sense. Art has always been, at least in part, a response to the world that we inhabit (though it can also be an anticipation of new worlds), and if space exploration brings us into contact with new experiences and new realities, we can expect our artistic endeavours to respond appropriately. This might help to stave off some stagnation in art, which could arise if we end up ‘caretaking the museum of human history’.

Crawford’s final argument is that space exploration will prompt new developments in philosophy, particularly moral and political philosophy. Why so? Because interstellar exploration will prompt new forms of human association — e.g. interstellar economies and colonies — that will require their own political rules and institutions. Establishing those institutions are working out their operations will provide lots of opportunities for philosophers and lawyers. It may also allow for more experiments in living. Similarly, interstellar exploration will throw open new ethical challenges and questions, such as the ethics of terraforming, multi-generational starships, planetary colonisation, the relationship between humans and machines, the duty to continue and diversify ‘life’, and the relationship between humans and other, potential, moral subjects such as alien life. Philosophers are already starting to explore these issues (see, for example, my recent interview with James Schwartz on this very topic) but one can imagine that the intellectual excitement would increase greatly if we embarked on an ambitious programme of space exploration. All that said, and as noted in my interview with James Schwartz, you could question how ‘new’ the philosophical inquiries being proposed here really are. As with much of philosophy, it often seems like we end up re-deploying old concepts and analyses to new problems. Perhaps that is enough novelty to stave off the threat of intellectual stagnation, but if you are looking for something radically new, you might be disappointed.



3. Conclusion
To sum up, Crawford defends manned space exploration on the grounds that it will help to maintain a desirable balance between stability and dynamism. It will do so by staving off intellectual stagnation and providing some direction/purpose to human endeavours. In particular, Crawford argues that manned space exploration will stave off stagnation in science, art and philosophy by giving us new frontier to explore, new experiences to express, and new ethical and political challenges to overcome.

I don’t have too much to say by way of conclusion. The purpose of this post was not to critique Crawford’s argument but to understand it. Hopefully I have succeeded in this. The only thing I will say to conclude is to reiterate the point I made above: that space exploration is one way in which to stave off intellectual stagnation. It may not be the only way. If you take a more abstract interpretation of what an intellectual ‘frontier’ is, you see that there are other ‘spaces’ that humans could explore to similar effect. For example, I presume there are frontiers of mental and physical experience that we are yet to fully explore (through drugs and enhancement technologies); and ‘virtual’ reality could give rise to new frontiers too. Perhaps pursuing progress on all these fronts would be most desirable.


* Is this unnecessarily sexist language? Probably, but I’m not sure if there is an alternative term. ‘Peopled’ or ‘personned’ don’t sound right to me.





Thursday, January 4, 2018

The Final Frontier: Space Exploration as a Utopian Project




It is said that Alexander the Great, after his conquests in Asia, looked out over his lands and was sad because there was nothing left to conquer. Of course, this was not true. There was plenty of land left to conquer at the time. Nowadays, however, we have something to be sad about. Virtually every inch of our planet has been mapped, or settled or controlled by our fellow human beings. True, there are areas of the deep ocean that are beyond our remit, and environments that are simply too harsh or unpleasant for us to live in for very long, but we know about them, have explored them to some extent, and can make choices about whether we want to live there. There are no real frontiers left on earth.*

Space is a different matter. Space is, to borrow a phrase, the final frontier. If we move out into space, we will be explorers once again, facing new challenges and possibilities. Is this something we should welcome? Could (manned) space exploration be conceived of as a utopian project — something that fulfils the highest ideal for human society? Maybe. In his article ‘Prospects for Utopia in Space’, Christopher C. Yorke considers the connection between space exploration and utopianism. He argues that a certain kind of utopian project is indeed compatible with space exploration, but it faces opposition from another popular conception of utopianism. I want to analyse his argument in this post.


1. Three Flavours of Utopianism
I’ll start where Yorke starts by distinguishing between three different approaches to utopianism. They are:

Teleological Utopianism: This is a type of utopianism that focuses on achieving some stable, ideal end-state for humanity. It is commonly associated with specific ‘blueprints’ for the ideal society. These blueprints are supposed to ‘draw us forward from the present to a more desirable future’ (Yorke, 2). They are supposed to motivate political action and change.

Discursive Utopianism: This is a type of utopianism that focuses on using idealistic blueprints to critique certain features of present society. It is not focused on achieving some particular ideal, but rather identifying and describing several alternatives to our current position. It is primarily a historical and literary movement, looking at how dissatisfaction with the present is pushing us toward something different and better.

Horizonal Utopianism: This is a type of utopianism that focuses on constantly shifting horizons of desire for humanity. The idea here is that there is no single, ideal blueprint that represents a stable end-state for humanity. Utopia is, rather, always just over the horizon: it is something we aim for but never quite achieve. If we achieved it, it would no longer be a utopia. The utopian project is thus conceived of as a constant process — a treadmill of elevating possibilities — not a journey with a fixed destination.


Hopefully, these definitions are reasonably clear. I think the contrast between the teleological and horizonal models is obvious and intuitive: they are contradictories. The discursive model is a little more opaque to me. I get that utopianism in literature is often used to critique and/or satire current social situations, and to articulate different possibilities for humanity, but I’m not entirely sure where discursive utopianism sits, conceptually speaking, relative to the other two.

Fortunately, I can ignore this. Yorke’s main argument has to do with the contrast between the teleological and horizonal approach. He argues that space exploration can be utopian if we conceive of utopianism in horizonal terms; it is not utopian if we conceive of utopianism in teleological terms. Let’s look at both parts of the argument now, starting with the rejection of teleological utopianism.


2. Space Exploration and Teleological Utopianism
Yorke’s argument for the incompatibility of teleological utopianism and space exploration is remarkably straightforward. It works something like this (the construction is mine, not Yorke’s):


  • (1) Teleological utopianism is motivated by a vision of the ideal end-state for humanity, i.e. it is about achieving a state of existence that is best for beings like us.

  • (2) An existence in space (either outer space or other planets) is not best for beings like us.

  • (3) Therefore, space exploration is not compatible with teleological utopianism.


The critical premise here is premise (2). Why assume that space is not the best place for beings like us? Yorke favours a biological incompatibility argument. We are evolved to live in a certain set of habitats and ecosystems. On Earth, we live in environments that are not too hot and not too cold. We are shielded from solar radiation by the Earth’s magnetic sphere. We have symbiotic relationships with bacteria and other organisms. These are just some of the factors that make an earth-bound existence convenient for beings like us. Space is different. We are not evolved to live there. It is a much harsher environment, not congenial to our flourishing. If we go there, we would have to live in highly protective and restrictive spaces that we create for ourselves. If there is life on other planets, we could be exposed to new biological threats and diseases. In the words of Dr McCoy from Star Trek: “space is disease and danger wrapped in darkness and silence”.

This all seems plausible, insofar as it goes. It does, however, highlight a problem with the argument. The motivating assumption behind premise (1) is that teleological utopianism requires a form of existence that is best for beings like us, i.e. being that are constituted as we are currently constituted. But why assume that human nature is fixed in our utopian blueprint? Could we not also change that in order to achieve some more ideal state of existence? This, after all, is what the transhumanist project is all about: escaping from the limitations of our biological form. This could be achieved through genetic and biological manipulation, and it could also be achieved through closer integration with machines (cyborgisation). Indeed, the first article discussing the idea of the cyborg was Klines and Cline’s article on manned space exploration and the need for cyborgisation. So, in many ways, transhumanism has always been part of our imaginings about our future in space.

Yorke acknowledges this. But he argues that if we did incorporate transhumanism into our teleological blueprint, we are likely to end up with something that is closer to a horizonal model of utopianism. Why? Because if nothing is really fixed — not even human nature — the prospects of a stable end-state for humanity are slight.


3. Horizonal Utopianism and Space Exploration
Yorke’s argument for the compatibility between horizonal utopianism and space exploration is also remarkably straightforward. It is, however, a bit stronger than an argument for mere compatibility. It claims that space exploration might be the only way to preserve the horizonal model of utopianism. The argument, as best I can tell, works like this:


  • (4) Horizonal utopianism is about ensuring that there are no fixed horizons of human possibility; it requires that we constantly push out toward new frontiers.

  • (5) Space exploration is the only way to ensure no fixed horizon for humanity.

  • (6) Therefore, space exploration is compatible with (and maybe the only way to preserve) the horizonal approach to utopianism.


Premise (5) is the key to this argument. Its defence comes in two parts. The first part argues that staying on earth means accepting a fixed horizon. The second part argues that space has limitless horizons. To support the first part you can follow the reasoning I set out in the introduction to this post, i.e. point out that we have conquered and explored virtually all corners of the earth, and that, even if there are some elements left to conquer and explore, there is no getting around the fact that the Earth is finite: we will eventually exhaust its horizons. To support the second part, you can point to the virtually limitless frontiers of space. As Yorke puts it:

In the unconquerable vastness of space, the unyielding aspirations of humankind might meet their material match. If, indeed, space represents the final frontier of human desire, because the conditions for its complete possession can never be met, then the horizonal model of utopia may indeed have a novel and central role for outer space to play within it. 
(Yorke, 8)

He follows this up later on with a reaffirmation of the limits of life of Earth:

In the barest physical sense, but also in an important psychological one, the abandonment of space exploration is the acceptance of a fixed horizon for humankind. 
(Yorke, 11)

This supports the view that Yorke’s argument is not just about the compatibility between horizonal utopianism and space exploration, but also about the preservation of the horizonal ideal.

But this, of course, raises a deeper question: is the horizonal model actually an ideal? To answer that, Yorke looks at a contrast between two theories: ‘frontierism’, which he derives from the work of Frederick Turner; and ‘consolidationism’, which he associates with the work of Immanuel Kant. Frontierism is an idea that is deeply embedded in the US psyche. It can be supported by a virtue ethical approach to the good life. The idea is that the frontier of possibility represents a set of obstacles to human existence (physical, mental, social etc.). By trying to overcome these obstacles, we build character and develop our virtues. Furthermore, the greater the obstacles, the greater the virtues being developed. Since space would be filled with many great obstacles, it could provide the ideal arena for developing virtues. This is why it would be a good thing to explore the final frontier of space. (For what it’s worth, I think this is wrong. Frontierism can work both ways: overcoming obstacles can bring out the worst in us as well as the best, particularly if the obstacles drive us to extremes of behaviour).

Contrast that with consolidationism. This is the view found in Immanuel Kant’s essay ‘Perpetual Peace’. It holds that limits on humanity are a good thing because they will force us to reach some accommodation with one another (to achieve the perpetual peace of Kant’s title). It is when we are pushing towards a new frontier that we get into conflict; reaching the limits existential possibility will lead to stability. As Yorke describes it: “Consolidation of Kant’s variety models humanity as a liquid, which will come to rest peacefully once it fully spreads to the edges of its container (Yorke, 16).

A full consideration of the merits of consolidationism lies beyond the scope of this post. Fortunately, we don’t need a full consideration. Yorke criticises it on the grounds that it contains one significant, conceptual flaw. Consolidationism only incentivises peace if we all agree that we have reached the limit: that there are no lands (in a metaphorical sense) left to conquer. As long as there is the ‘live’ possibility of a new frontier, our restlessness and ambition can takeover once again. Space is a ‘live’ possible new frontier. Even if we are not currently exploring it and populating it, we can at least envision that possibility. We can imagine, and even start to create, the technologies that will enable us to explore this final frontier. That means consolidationism is highly unlikely to take hold in the real world. Frontierism — and with it the horizonal model — provides a more practical and unifying vision.


4. Some lingering concerns
All that said, there are some lingering doubts one can have about the merits of the horizonal view and its link to space exploration. Yorke himself acknowledges two. The first concerns the distinction between individual and collective horizons. Obviously what counts as a horizon (or new frontier) for me may not count as a horizon for humanity as a whole. I have never been to China, for example. Exploring China would mean exploring a new frontier for me. Indeed, I have lots of horizons left to explore on Earth: I can thus carry out my own utopian project right here without ever thinking about going into space. But obviously my personal horizons are not the same as humanity’s as a whole. If we are to follow the horizonal model, we must think in terms of collective horizons, not individual ones.

The other concern that Yorke discusses is the potential tension between the horizonal case for space exploration and other moral considerations that may weigh against space exploration. The horizonal model does not provide an all-things-considered case for space exploration. It could be that space exploration is unwise or immoral for other reasons, e.g. it would waste valuable resources or destroy the environment. You need to factor in these other moral considerations when making the all-things-considered case for space exploration.

I have my own doubts about the horizonal case for space exploration. My main worry is the lack of precision on what counts as a ‘horizon’ or ‘frontier’. Throughout much of the critique of consolidationism, Yorke seems to presume a geographical/physical conception of horizons. The problem with Earth is that its geographical limits have been reached (or, at least, will be eventually). But I think we should favour a broader, more conceptual understanding of horizons. Humans exist in multiple realms/dimensions — the mental, social, emotional, biological, geographical — each of which has its own current horizons of possibility. If we adopted this broader conception of horizons, premise (5) of the horizonal case for space exploration would be much weaker than it currently appears to be. We may have reached our geographical limits on Earth but have we reached our mental, social and biological limits? I would say not. Exploring geographical space is just one way of realising the horizonal model; there are others too. It surprises me that Yorke doesn’t consider this in more detail in his article, particularly given that his earlier comments about transhumanism hinted at a broader conception of horizons.

This is not to deny the value of space exploration. If we are committed to the horizonal model, I think space exploration would be a good idea since it would be good to push out on all frontiers. I also think there are other moral considerations that weigh in favour of space exploration. But I will have to leave discussion of those to some other time.

* I’m speaking loosely and abstractly about the human species as a whole. There are many people who do not have a choice over where they live for political and personal reasons. Also, the language of conquest and colonisation is deeply problematic since it historically involves taking control of land that has been settled and controlled by others.



Friday, April 26, 2019

Who Should Explore Space: Robots or Humans?




Should humans explore the depths of space? Should we settle on Mars? Should we become a “multi-planetary species”? There is something in the ideal of human space exploration that stirs the soul, that speaks to a primal instinct, that plays upon the desire to explore and test ourselves to the limit. At the same time, there are practical reasons to want to take the giant leap. Space is filled with resources (energy, minerals etc) that we can utilise, and threats we must neutralise (solar flares, asteroids etc).

On previous occasions, I have looked at various arguments defending the view that we ought to explore space. Those arguments fall into three main categories: (i) intellectual arguments, i.e. ones that focus on the intellectual and epistemic benefits of exploring space and learning more about our place within it; (ii) utopian/spiritual arguments, i.e. ones that focus on the need to create a dynamic, open-ended and radically better future for humanity, both for moral and personal reasons; and (iii) existential risk arguments, i.e. ones that focus on the need to explore space to both prevent and avoid existential risks to humanity.

For the purposes of this article, let’s assume that these arguments are valid. In other words, let’s assume that they do indeed provide compelling reasons to explore space. Now, let’s ask the obvious follow-up question: does this mean that humans should be the ones doing the exploring? It is already the case that robots (broadly conceived) do most of the space exploration. There are a handful of humans who have made the trip. But since the end of the Apollo missions in the early 1970s, humans have not gone much further than low earth orbit. For the most part, humans sit back on earth and control the machines that do the hard work. Soon, given improvements in AI and autonomous robots, we may not do much controlling either. We may just sit back and observe.

Should this pattern continue? Is space exploration, like so many other things nowadays, something that is best left to the machines? In this article, I want try to answer that question. I do so with the help of an article written by Keith Abney entitled “Robots and Space Ethics”. As we will see, Abney thinks that, with one potentially significant exception, we really should leave space exploration to the machines. Indeed, we might be morally obligated to do so. I’m sympathetic to what Abney has to say, but I still hold some hope for human space exploration.


1. Robots do it Better: Against Human Space Exploration
Why should we favour robotic space exploration over human space exploration? As you might imagine, the case is easy to state: robots are better at it. They are less biologically vulnerable. They do not depend on oxygen, or food, or water, or a delicate symbiotic relationship with a group of specially-evolved microorganisms, for their survival. They are less at risk from exposure to harmful solar radiation; they are less at risk from infection from alien microgranisms (a major plot point in HG Wells’s famous novel War of the Worlds). In addition to this, and as Abney documents, there are several major health risks and psychological risks suffered by astronauts that can be avoided through the use of robotic explorers (though he notes that the small number of astronauts makes studies of these risks somewhat dubious).

This is not to say that robots have no vulnerabilities and cannot be damaged by space exploration. They obviously can. Several space probes have been damaged beyond repair trying to land on alien worlds. They have also been harmed by space debris and suffered irrevocable harm due to general wear and tear. However, the problems encountered by these space probes just serve to highlight the risk to humans. It’s bad enough that probes have been catastrophically damaged trying to land on Mars, but imagine if it was a crew of humans? The space shuttle fatalities were major tragedies. They sparked rounds of recrimination and investigation. We don't want a repeat. All of this makes human space exploration both high risk and high cost. If we grant that humans are morally significant in a way that robots are not, then the costs of human space exploration would seem to significantly outweigh the benefits.

But how does this reasoning stack up against the arguments in favour of space exploration? Let’s start with the intellectual argument. The foremost defender of this argument is probably Ian Crawford. Although Crawford grants that robots are central to space exploration nowadays, he suggests that human explorers have advantages over robotic explorers. In particular, he suggests that there are kinds of in-person observation and experimentation that would be possible if humans were on space missions that just aren’t possible at the moment with robots. He also argues, more interestingly in my opinion, that space exploration would enhance human art and culture by providing new sources of inspiration for human creativity, and would also enhance political and ethical thinking because of the need to deal with new challenges and forms of social relation (for full details, see my summary here).

Although Abney does not respond directly to Crawford’s argument, he makes some interesting points that could be construed as a response. First, he highlights the fact that speculations about the intellectual value of human space exploration risk ignoring the fact that robots are already the de facto means by which we acquire knowledge of space. In other words, they risk ignoring the fact that without them, we would not have been able to learn as much about space as we have. Why would we assume that this trend will not continue? Second, he argues that claims to the effect that humans might be better at certain kinds of scientific investigation are usually dependent on the current limitations of robotic technology. As robotic technology improves, it’s quite likely that robots will be able to perform the kinds of investigations that we currently believe are only possible with human beings. We already see this happening here on Earth with more advanced forms of AI and robotics; it stands to reason that these advanced forms of AI can be used for space exploration too.

The bottom line then is that if our reasons for going to space our largely intellectual — i.e. to learn more about the cosmos and our place within it — then robots are the way to go. That said, there is nothing in what Abney says that deals with Crawford’s point about the intellectual gains in artistic, ethical and political thought. To appreciate those gains, it seems like it would have to be humans, not robots, that do the exploration. Perhaps one could respond to this by saying that some of these gains (most obviously the artistic ones) could come from watching and learning from robotic space missions; or that these intellectual gains are too nebulous or vague (what counts as an artistic gain?) to carry much weight; or that they come with significant risks that outweigh any putative benefits. For example, Crawford is probably correct to suggest that space exploration will prompt new ethical thinking, but that may largely be because it is so risky. Should we want to expose ourselves to those risks just so that philosophers can get their teeth into some new ethical dilemmas?

Let’s turn next to the more spiritual/utopian argument for space exploration. That argument focuses on the appeal of space exploration to the human spirit and the role that it could play in opening up the possibility of a dynamic and radically better future. Instead of being consigned to Earth, to tend the museum of human history (to co-opt Francis Fukuyama’s evocative phrase), we can forge a new future in space. We can expand the frontiers of human possibility.

This argument, much more so than the intellectual argument, seems to necessitate human participation in space exploration. Abney almost concedes as much in his analysis, but makes a few interesting points by way of response. First, he suggests that the appeal to the human spirit could be addressed by space 'tourism' and not space 'exploration'. In other words, we could look on human space travel as a kind of luxury good, and not something that we need to invest a lot of public money in. The public money, if it should go anywhere, should go to robotic space exploration only. Second, and relatedly, given the high cost of human space travel, any decision to invest money in it would have to factor in the significant opportunity cost of that investment. In other words, it would have to acknowledge that there are other, better, causes in which to invest. It would, consequently, be difficult to morally justify the investment. Third, he argues that, to the extent that human participation is deemed desirable, we should participate remotely, through immersive VR. This would be a lower cost and lower risk way for vulnerable beings like us to explore the further reaches of space.

I find this last suggestion intriguing. I imagine the idea is that we can satisfy our lust for visiting alien worlds or travelling to distant galaxies by using robotic avatars. We can hook ourselves up to these avatars using VR headsets and haptics, and really immerse ourselves in the space environment at minimal risk to our health and well-being. I agree that this would be a good way to do it, if it were feasible. That said, the technical challenges could be formidable. In particular, I think the time-lag between sending and receiving a signal between yourself and your robotic avatar would make it practically unwieldy. In the end, we might end up with little more than an immersive but largely passive space simulator. That doesn’t seem all that exciting.


2. The Interstellar Doomsday Argument
I mentioned at the outset that despite favouring robotic space exploration, Abney does think that there is one case in which human exploration might be morally compelling, namely: to avoid existential risk.

To be clear, Abney argues that robots can help us to mitigate many existential risks. For example, we could use autonomous robots to monitor and neutralise potential asteroid impacts, or to reengineer the climate in order to mitigate climate change. Nevertheless, he accepts that there is always the chance that these robotic efforts might fail (e.g. a rogue asteroid might leak through our planetary defence system) and Earth might get destroyed. What then? Well, if we had a human colony on another planet (or on an interstellar spaceship) there would be a chance of long-term human survival. Granting that we have a moral duty not to prevent the destruction of our species, it consequently seems to follow that we have a duty to invest in at least some human space exploration.

What’s more, Abney argues that we may have to do this sooner rather than later. This is where he makes his most interesting argument, something he calls the “Interstellar Doomsday Argument”. This argument applies the now-classic probability argument for “Doom Soon” to our thinking about the need for interstellar space exploration. This argument takes a bit of effort to understand, but it is worth it.

The classic Doomsday Argument, defended first by John Leslie and then championed by Nick Bostrom and others, claims that human extinction might be much closer in the future than we think. The argument works from some plausible initial assumptions and then applies to those assumptions some basic principles drawn from probability theory. I’m not going to explain the full thing (there are some excellent online primers about it, if you are interested) but I will give the gist of it. The idea is that, if you have no other background knowledge to tell you otherwise, you should assume that you are a randomly distributed member of the total number of humans that will ever live (this is the Copernican assumption or "self-sampling assumption"). You should also assume, if you have no background knowledge to tell you otherwise, that the distribution of the total number of humans that will ever live will follow a normal pattern. From this, you can conclude that you are highly unlikely to be at the extreme ends of the distribution (i.e. very near the start of the sequence of all humans; or very near the end). You can also conclude that there is highly probable upper limit on the total number of people who will ever live. If you play around with some of the background knowledge about the total human population to date and its distribution, you can generate reasonably pessimistic conclusions about how soon human extinction is likely to be.

That’s the gist of the original Doomsday Argument. Abney uses a variant on it, first set out by John Richard Gott in a paper in the journal Nature. Gott’s argument, using the standard tools of probability theory, applies to the observation of all temporally distributed phenomena, not just one’s distribution within the total population of humans who will ever live. The argument (called the “Delta t” argument) states that:

Gott’s Delta t Argument “[I]f there is nothing special about one’s observation of a phenomenon, one should expect a 95% probability that the phenomenon will continue for between 1/39 times and 39 times its present duration, as there’s only a 5% possibility that your random observation comes in the first 2.5% of its lifetime, or the last 2.5%” 
(Abney 2017, 364).

Gott originally used his argument to make predictions about how long the Berlin Wall was likely to stand (given the point in time at which he visited it), and how long a Broadway show was likely to remain open (give the point in time at which he watched it). Abney uses the argument to make predictions about how long humanity is likely to last as an interstellar species.

Abney starts with the observation that humanity first became an interstellar species sometime in August 2012. That was when the Voyager 1 probe (first launched in the 1970s) exited our solar system and entered interstellar space. Approximately seven years have elapsed since then (I’m writing this in 2019). Assuming that there is nothing special about the point in time at which I am “observing” Voyager 1’s interstellar journey, we can apply the Delta t argument and conclude that humanity’s status as an interstellar species is likely to last between (1/39 x 7 years) and (39 x 7 years). That means that there is a 95% chance that we have only got between 66 days and 273 years left of interstellar existence.

That should be somewhat alarming. It means that we don’t have as long we might think to escape our planet and address the existential risks of staying put. In fact, the conclusion becomes more compelling (and more alarming) if we combine the Doomsday argument with thoughts about the Great Silence and the Great Filter.

The Great Silence is the concern, first set out by Enrico Fermi, about the apparent absence of intelligent alien life in our galaxy. Fermi’s point was that if there is intelligent life out there, we would expect to have heard something from it by now. The universe is a big place but it has existed for a long time and if an intelligent species has any desire to explore it, it would have had ample time to do so by now. This has since been confirmed by calculations showing that if an intelligent species used robotic probes to explore the universe (specifically it used self-replicating Von Neumann probes) then it would only take a few hundred million years to ensure that every solar system had at least one such probe in it.

The Great Filter is the concern, first set out by Robin Hanson, about what it is that prevents intelligent species from exploring the universe and making contact with us. Working off Fermi’s worries about the Great Silence, Hanson argued that if intelligent life has not made contact with us yet (or left some sign or indication of its existence) then it must be because there is some force that prevents it from doing so. Either species tend not to evolve to the point that their intelligence enables them to explore space, or they destroy themselves when they reach a point of technological sophistication, or they just don’t last very long when they reach the interstellar phase (there are other possibilities too).

Whatever the explanation of the Great Silence and the Great Filter, the fact that there do not appear to be other interstellar species and we do not know why, should give us reason to think that our current interstellar status will be short-lived. That might tip the balance in favour of human space exploration.

Before closing, it is worth noting that Doomsday reasoning of the sort favoured by Abney is not without its critics. Several people have challenged and refined Gott’s argument of the years, and Olle Häggström argued that the Doomsday argument is fallacious, and an unfortunate blight on futurist thinking, in his 2016 book Here be Dragons.




Tuesday, March 27, 2018

Episode #38 - Schwartz on the Ethics of Space Exploration

  use Jim schwartz.jpg

In this episode I talk to Dr James Schwartz. James teaches philosophy at Wichita State University.  His primary area of research is philosophy and ethics of space exploration, where he defends a position according to which space exploration derives its value primarily from the importance of the scientific study of the Solar System.  He is editor (with Tony Milligan) of The Ethics of Space Exploration (Springer 2016) and his publications have appeared in Advances in Space Research, Space Policy, Acta Astronautica, Astropolitics, Environmental Ethics, Ethics & the Environment, and Philosophia Mathematica.  He has also contributed chapters to The Meaning of Liberty Beyond Earth, Human Governance Beyond Earth, Dissent, Revolution and Liberty Beyond Earth (each edited by Charles Cockell), and to Yearbook on Space Policy 2015.  He is currently working on a book project, The Value of Space Science.  We talk about all things space-related, including the scientific case for space exploration and the myths that befuddle space advocacy.

 You can download the episode here or listen below. You can also subscribe on Stitcher and iTunes (the RSS feed is here).



Show Notes

  • 0:00 - Introduction
  • 1:40 - Why did James get interested in the philosophy of space?
  • 3:17 - Is interest in the philosophy and ethics of space exploration on the rise?
  • 6:05 - Do space ethicists always say "no"?
  • 8:20 - Do we have a duty to explore space? If so, what kind of duty is this?
  • 10:30 - Space exploration and the duty to ensure species survival
  • 16:16 - The link between space ethics and environmental ethics: between misanthrophy and anthropocentrism
  • 19:33 - How would space exploration help human survival?
  • 23:20 - The scientific value of space exploration: manned or unmanned?
  • 28:30 - Why does the scientific case for space exploration take priority?
  • 35:40 - Is it our destiny to explore space?
  • 38:46 - Thoughts on Elon Musk and the Colonisation Project
  • 44:34 - The Myths of Space Advocacy
  • 51:40 - From space philosophy to space policy: getting rid of the myths
  • 58:55 - The future of space philosophy
 

Relevant Links




Friday, July 12, 2019

Automation, Space and Utopia: Making the Utopian Case for Space



[This is the extended text version of a lecture I delivered at the University of Otago, Dunedin on the 11th July 2019. As I explained to the audience, the lecture is a riff off my forthcoming book Automation and Utopia. That book is primarily about the impact of automating technologies on human social life, but does have one chapter that discusses space exploration. This lecture is a longer exploration of some of the themes raised in that chapter.]


When astronauts from Apollo 11 first set foot on the moon in July 1969, they left a message for future visitors. On a plaque appended to the ladder they used to descend to the surface, they inscribed the following words:

Here men from the planet Earth first set foot on the Moon in July 1969 AD. We came in peace for all mankind.

The message remains there to this day, at 0.67408°N and 23.47297°E on the Sea of Tranquility.

The message is, in many ways, a noble one. The use of the word 'mankind' may raise an eyebrow or two nowadays, but overall the intention seems to be to highlight a common sense of human purpose and meaning, one that transcends the petty squabbles that pockmark our terrestrial history. What's more, I'm sure many of the people involved in the Apollo missions sincerely believed that message.

But it is, of course, a lie -- or at least a half truth. We did not set foot on the moon for noble or utopian reasons. We set foot on the moon because of those very petty terrestrial squabbles that the message proclaims to leave behind. The Apollo mission was a signal of American power, a way to beat the Soviets in the Cold War. When the victory was complete, the Apollo programme was disbanded, and subsequent 'manned'1 space missions have been far more limited in their aspirations.

The lesson of the Apollo programme thus seems to be an ambivalent one. Its utopian packaging hides a more cynical political core. It is no surprise then that subsequent proclamations of a human return to the Moon or a voyage to Mars have been greeted with suspicion. In this lecture, I want to reconsider this lesson of ambivalence and try to rehabilitate the utopian case for human space exploration.

I do so in four stages. First, I fast forward from the Apollo missions to the contemporary space race and examine its motivations through the lens of two of its most prominent spokespeople: Jeff Bezos and Elon Musk. Second, I distill from this discussion two basic arguments one can make in favour of human space exploration: (i) a necessitarian argument and (ii) a utopian argument. I argue that although space advocates often lean on the necessitarian argument, it faces some severe limitations and hence the utopian argument is the one we ought to be focusing on. Third, I try to make a compelling utopian argument. And fourth, and finally, I defend this argument from six objections.


1. The New Space Race: Musk versus Bezos
It would be wrong to suggest that contemporary space exploration is being led by the private sector. There is still a great deal of governmental and national investment in space exploration, noticeably among emerging superpowers such as China and India. Nevertheless, certain private actors have been doing a lot of public cheerleading about it and I want to speak about the visions of two of them: Elon Musk and Jeff Bezos.

Musk has, perhaps, been the most public and the most prominent voice in the contemporary space race. Through his company SpaceX, he has made it his life's mission to build a human colony on Mars and so to create the infrastructure needed to make humanity a 'multiplanetary species'. Musk speaks about this project with passionate zeal and has inspired legions of equally passionate fans. Bezos has, until quite recently, been more taciturn, but the passion for space burns deep within him. Long before Amazon was a twinkle in his eye, Bezos was a devout 'space nerd' and spoke, during his valedictorian speech to his high school, of his desire to build human colonies in space. At present, through his company Blue Origin, he says he wants to build a 'road to space', one that will enable future generations to innovate in space like he and his contemporaries innovated on the internet. Unlike Musk, Bezos is not so keen on planetary colonization. He wants to build largescale orbiting space colonies, along the lines of what you can find in Neill Blomkamp's movie Elysium or in Arthur C Clarke's Rendezvous with Rama book series.

Both men are inspired by earlier pioneers. In Musk's case, the influence of Werner van Braun's Das Marprojekt and Robert Zubrin's The Case for Mars can be readily discerned. Von Braun's work, originally written in 1946, is an impressively forward-looking piece of technical scientific speculation (whatever you might think of Von Braun's compromised association with the Nazis). Written before humans had launched anything successfully into space, it describes in detail how we could build an interplanetary spaceship (in orbit) and use this to travel to Mars. Zubrin's work is more recent (first published in 1996) and goes into detail on the technical and practical feasibility of building an actual colony on Mars. It's this book that probably served as the more proximate inspiration for Musk's work, though Musk and Zubrin have a slightly contentious relationship (the latter often criticising specific elements of the former's plans for Mars colonization).

In Bezos's case, the intellectual influence is much clearer and more direct. While at Princeton, Bezos was a student of Gerald O'Neill, the physicist and author of the ground-breaking book The High Frontier. First published in the 1970s, this book describes in vivid and fascinating detail how we could build orbiting space colonies. The book contains schematic blueprints for several such colonies. They all follow a common format. They consist of long hollow tubes (or spheres), on the inner surface of which we recreate a planetary surface. The tubes are then placed at optimal and human-friendly orbits around the sun, and set spin at a constant rate to recreate the effects of gravity. Inside, we can control the environment and the weather conditions and live pleasant, and recognisably human lives. This is preferred to the colonization of other planetary surfaces, which are often harsh and inhospitable to humans. In a public speech on May 9th 2019, Bezos has stated very clearly that his long-term goal is to make it possible for us to create such 'O'Neill colonies' in space. Some images from O'Neill's book and Bezos's talk are provided below. If they look familiar, they should. O'Neill's work has inspired many science fiction authors and movie directors, including the aforementioned Arthur C Clarke and Neil Blomkamp.

Screenshot from Jeff Bezo's talk at Blue Origin on 9 May 2019 

Original artwork from O'Neill's The High Frontier


Both Musk and Bezos are obsessed with the technical details of human space exploration. This is for obvious reasons: both men have engineering backgrounds and have made their fortunes out of their ability to build things. Furthermore, both are aware that we have been speculating about human space exploration for centuries, but unless it becomes technically possible there is little to be gained from this speculation. Although both disagree on the long-term visions, they are following similar technical pathways. For example, both agree that reducing the cost of spaceflight through reuseable rockets is the key first step to a human future in space. And both have made considerable technical progress towards this goal, Musk with the various Falcon rockets (images below) and Bezos with the New Shepard sub-orbital rocket and the forthcoming New Glenn orbital rocket. Both also aim to create a range of landing vehicles to get onto the surface of other planets and robotic rovers and similar devices for exploring and building on those surfaces.

The technical details of both projects are important but peripheral to the present discussion. I am not so much concerned with how Bezos and Musk plan to execute their visions, but rather with why they want to do it in the first place. Surprisingly enough, neither articulates this at any great length, but their views are reasonably clear.

Musk has said that building a colony on Mars is a human insurance policy -- a way of ensuring that humanity can continue in the aftermath of some existential catastrophe on Earth. Musk, as you may know, is something of a connoisseur of existential risks, voicing very publicly his concerns about climate change and artificial superintelligence. He thinks that if we want humanity to survive in the long-run, then we must become a multiplanetary species. Musk doesn't conceive of his Mars project in purely negative terms. He also thinks that the colonization of Mars will be a great adventure and inspiration for humanity, often expressing this view in the form of a rhetorical question (well it would be, wouldn't it?). Still, Musk is underwhelming when it comes to the justifications for his project. For example, his 2016 presentation on the case for making humanity a multiplanetary species is -- to be blunt -- cringeworthy and difficult to watch.

Bezos is much slicker and more articulate (as you might expect).2 His argument is an updating of the one made by O'Neill in The High Frontier. Like Musk, he is concerned about the long-term prospects for humanity. He argues that Earth is the 'best planet' in the solar system and that we need to protect it. Indeed, Bezos has coopted the language of Musk's critics and repeatedly emphasises the fact that there is no 'planet B'. But Bezos argues that we cannot protect Earth if we continue on our current trajectory. Our present way of life demands a lot of energy use. Indeed, increased energy use per capita is the hallmark of the civilisational progress we have made over the past three hundred years (in this, Bezos echoes the arguments made by Ian Morris in his book Why the West Rules for Now and The Measure of Civilization). The problem is that the Earth has a limited carrying capacity. So this progress cannot continue on Earth. We must migrate to space, and take full advantage of its abundant solar energy and other natural resources, to sustain our existence.

To be clear, Bezos does not make his argument in a purely negative tone. Far from it. His goal is not simply to conserve what we currently have but, rather, to ensure that it continues to grow and develop. He imagines a future in which trillions of humans populate space colonies and maintain a culture of 'dynamism and growth'. He says that such a large population could house a 1000 Einsteins and 1000 Mozarts. What wonders would they create to benefit us all? The question answers itself.

Although Musk and Bezos catch a lot of flack for their views, there is, I believe, something inspiring about they are doing. Still, it would be remiss of me not to highlight the cynical interpretation of what they are doing. Just as the Apollo programme was criticised for hiding its political motivations in some utopian packaging, so too are they criticised for hiding their personal ambition behind a smokescreen of inspiration. Critics argue that manned space exploration, of the sort desired by Musk and Bezos, is an indulgence we cannot afford -- a vanity project for two extremely wealthy men. They argue that projects of this sort detract attention away from what needs to be done here on earth, on initiatives that could alleviate the suffering of millions and help to avert climate catastrophe. They also question the desire to maintain a culture of growth and dynamism. This culture, they point out, is the root cause of our current problems. We need to focus instead on building a steady-state economy and making do with a 'zero growth' society. As such, they see what Musk and Bezos are doing as symptoms of the disease we need to fix. Even more cynically-minded critics, will argue that Musk and Bezos are in it for their own gain. Space colonies are an escape hatch for the 1% (or should that be 0.01%?), an insurance policy for themselves and their Silicon Valley friends, and a way of perpetuating inequality and suffering here on Earth.3

Is this right? Can we avoid the cynical interpretation of these projects? That's the question I want to answer in the remainder of my remarks.


2. Two Arguments for Manned Space Exploration
Bezos and Musk are not lone voices in the wilderness. There are many others constructing and evaluating arguments for manned space exploration. Indeed, there has been surge of interest in this topic in the recent philosophical literature 4. Still, for all their theoretical sophistication and nuance, these arguments come in two main forms, both of which are adopted by Musk and Bezos.

The first is the 'Necessitarian Argument'. According to this argument, humans must explore space, it is not something that is merely optional or desirable. There are a variety of stated reasons for this. Sometimes the focus is on escaping existential catastrophes like climate change or nuclear war or meteor strike or, in the very long term, the supernova that will envelop the Earth. Sometimes the focus is more on the duty to ensure the long-term survival of the human race (as well as other lifeforms).5 The philosopher Keith Abney, for example, has argued that if anything counts as a moral duty the duty to ensure human survival counts as a moral duty. This duty seems to necessarily entail future human space exploration.

The logic here is impeccable. We know for certain that our planet will be rendered uninhabitable by the Sun in a few billion years and will ultimately be engulfed by the Sun in 7.5 billion years. Before then, we can be reasonably confident that something terrible will happen to our planet (human-induced or otherwise) and that we will not be able to survive as a result. So if we want to survive over the long-run then it really does look like we must get off planet. Musk is right about this.

But this necessitarian argument has some serious limitations. For one thing, it is only truly compelling in the very long-run. The risks to which it ultimately appeals are nebulous and distant. Who knows what things will be like in 7.5 billion years? Will there even be a human race? Probably not. Since we have several billion years left to run down the clock, there is little reason to prioritise human space exploration right now. Indeed, doing so right now comes with a significant opportunity cost, as critics are keen to point out. It means we have to divert scarce resources from other projects which are both more urgent and more morally compelling. For instance, whatever you might think of billionaire philanthropy (and many people think little of it nowadays), I'm sure most of you would agree that Bill Gates's investment in vaccination and anti-malaria treatments in the developing world is a more compelling and morally necessary investment than Bezos's investment in a new moon lander.6 In addition to this, the claim that space exploration is somehow morally necessary in the short term seems quite cavalier and irresponsible in light of the risks that this poses to the astronauts and pioneers that will lead this initiative. Elon Musk would have a very hard time convincing me or anyone else that they have a moral obligation to be part of the first mission to Mars, given the risk this undoubtedly poses to human health and well-being. Participation in such a mission would have to be morally optional, not a matter of moral obligation.

Consequently, I think the necessitarian argument faces an uphill battle. It fails to be compelling or persuasive, at least in the short term. Nevertheless, I understand why people try to make it: if it worked, it would make the strongest possible case for human space exploration. It just doesn't work.

The other argument is the 'Utopian Argument'. According to this argument, human space exploration is desirable because it helps us to realise important human goods. In other words, if we go into space, we can live lives of meaning and purpose, and build a better future for ourselves and our offspring. The goods associated with space exploration include things like scientific discovery, knowledge, spiritual enlightenment, communalism, progress, dynamism and growth (the things Bezos emphasises in his case for space). This argument is weaker than the necessitarian argument. It does not claim that space exploration is obligatory or compulsory, merely that it is desirable -- an option that we should seriously consider exercising.

And yet, despite this, I find the utopian argument more appealing. It is a more hopeful and optimistic argument. It does not try to scare us with apocalyptic prognostications, nor bully us into accepting its conclusions. Rather, it invites us to consider what it means to be human and what is most conducive to our flourishing. Could it be that space exploration is exactly what we need to flourish? It is a tantalising thought and one that I will spend the remainder of this lecture developing.


3. Making the Utopian Argument
Before I get into the meat of the utopian argument, I need to confront an unwelcome fact. 'Utopia' is a dirty word. Very few people admit to being utopians nowadays. Indeed, even though I would argue that Bezos makes a utopian case for human space exploration, he disavows that terminology. Why is this?

The reason is that utopian political and social movements have acquired an unwelcome reputation. In some quarters they are viewed as naive and faintly ridiculous. A good example of this can be found in David Bramwell's satirical travelogue The No 9 Bus to Utopia which recounts his adventures visiting 'intentional communities' around the globe. Each of these communities espouses a certain vision of the good life (ranging from highly regimented, eco-friendly living to the more libertine world of wild sex parties and unchecked hedonism). Each of them comes off as kooky and unattractive. In other quarters, utopians are viewed as dangerous and malign. A good example of this can be found in Karl Popper's various essays on utopian political movements. Writing in the mid-20th century, Popper argued that fascism and communism were utopian political movements. They were both built around a 'blueprint' for the ideal society. The goal was to implement this blueprint. The problem, for Popper, was that not only were these blueprints flawed, they were also used as an excuse for violence. Those who could not be converted to the utopian cause had to be suppressed or eliminated. Their sacrifice was justified because once the blueprint was implemented all would be well. Popper argued that all utopian movements had this inherent tendency to justify great violence, irrespective of the blueprints they espoused. He argued that humans should consequently reject utopianism and instead focus on eliminating 'concrete evils' from society.

I have a lot of sympathy for Popper's view, but I still endorse a utopian outlook. This not because I think Popper's critique is wrong 7 but because I think there is a version of utopianism that is immune from his critique. Popper conflates utopianism with the view that there is a single, ideal blueprint that society ought to implement to realise the best of all possible worlds. It is true that classic utopian texts such as Plato's Republic and More's Utopia have this form, but very few modern utopianists endorse this understanding. H.G. Wells, for example, favoured a form of utopianism that was dynamic and adaptive, changing its vision of the good society in response to the latest technological and social trends. And Oscar Wilde, famously, argued that a utopian society was always 'on the horizon'. In other words, we never arrive at the ideal society we always just try get better and better.

The philosopher Christopher Yorke, in homage to Wilde, refers to this as the 'horizonal' model of utopianism. This is the version of utopianism I endorse. According to it, the key insight of utopian thinking lies not in coming up with carefully prescribed plans for the ideal society, but rather in (a) recognising that human society could be much better than it currently is and (b) figuring out how to make this possibility a reality. As such, utopianism is best thought of as an anti-conservative philosophy of social reform, one that is committed to continual exploration of the horizons of possibility.

There is still the danger that this horizonal understanding of utopianism could be used to support violence and suppression of dissent. But we can safeguard against this in two ways. First, we can recognise that there is unlikely to be a single radically better future for humanity. There is much more likely to be a plurality of radically better futures. We should respect that plurality and not commit ourselves to taking any one trajectory through the set of possible futures. Second, we can build 'anti-violence' conditions into our definition of utopianism. This is something that Christopher Yorke does in his work, arguing that since there is no final end state toward which humanity must aim, there is no end state that can justify the means of violence. Instead, all utopian projects must respect and protect the rights of individuals not to be harmed in their wake. 8

With this revised understanding of utopianism in mind, it is possible to make the utopian argument for human space exploration. We do this by arguing that human space exploration is conducive to continual improvement of the human condition, and is hence consistent with the aim of horizonal utopianism. There are three ways in which to make this argument.

The first is to appeal directly to the link between space exploration and expanding horizons. If the purpose of horizonal utopianism is to keep the frontiers of human possibility open, then it seems like committing to the project of space exploration is an obvious way to do this. After all, we have few horizons left to explore here on earth. Humanity has conquered the four corners of the globe9. We have set up human societies and outposts in the harshest environments and we have made it possible for humans to live and, in most cases, thrive in those environments. There are, to paraphrase Alexander the Great, no lands left for us to conquer. If we continue with our Earthbound existence, we must make our peace with a fixed horizon10. If we expand into space, the horizon opens up once more. In fact, space provides us with a near infinite frontier of possibility. The ideal playground for the horizonal utopianist.

Of course this isn't quite true. There are still some geographical horizons left to explore on Earth -- the deep ocean, for example, remains relatively free from human occupation -- and there are other metaphorical horizons that we could continue to explore with an Earthbound existence -- for example, we could explore 'virtual' environments, or new forms of biological existence through genetic engineering and bioenhancement. But even if space exploration is not the only way to ensure a continued horizon of possibility, it is at least one way in which to do this and hence is consistent with the ethos of horizonal utopianism.

Note how this first argument does not appeal to any particular conception of the good life. It does not claim that the lives we will live in space will be radically better than the lives we live on Earth. The second argument makes up for this omission by arguing that not only does human space exploration allow for a continued horizon of possibility, it also allows for a better existence by helping to realise certain human goods. I mentioned several of these already when I introduced the utopian argument earlier and, indeed, there are many different ways of making this second argument, each one varying depending on the good to which you appeal. For example, you could argue that human space exploration is utopian because it enables a radically better form of human freedom, perhaps because it allows pioneering space colonies to determine their own fates free from the interference of Earthbound governments. In this sense, human space exploration could be deemed utopian for the same reason that classic American frontierism was thought to be utopian. I'll return to this idea a little later on, for now I want to make a different argument that appeals to a different set of goods.

To be precise, I want to argue that human space exploration is utopian because it allows for the continued realisation of intellectual goods (such as scientific discovery, artistic creation, philosophical insight). This argument has been made eloquently and relentlessly by the astrophysicist Ian Crawford. Crawford makes two key points. The first is that even if an Earthbound existence does not necessarily lead to intellectual stagnation, it will be more likely to do so than a space-oriented one. Unless we have new experiences or encounter new phenomena, our intellectual lives will tend to be relatively monotonous and uninventive. We might refine ideas and theories, but not truly innovate. A good analogy here might be the stagnation we currently see in the movie industry: instead of coming up with genuinely new ideas we have to make do with endless, formulaic sequels and movie franchises. If we stay put on Earth, then we will tend to have the same experiences and encounter the same phenomena over and over again. The second point is that space exploration will allow us to avoid intellectual stagnation. Through space exploration we will make new discoveries about the universe and our place within it; we will encounter new phenomena and react to them in interesting and unexpected ways. This will enable us to innovate in three distinct ways: (i) it will enable us to develop our scientific theories of how the universe works; (ii) it will enable (and indeed force) us to develop new models of ethical and political thought to cope with the challenges of extra-terrestrial existence and (iii) it will give us the raw material to develop new forms of artistic expression and invention.11

You might wonder whether this argument (and the previous one) are essentially the same as Jeff Bezos's 'dynamism and growth' argument. There are certainly similarities between them, but there are also important differences. Bezos's argument appeals to the continued growth and expansion of the human race and the human economy. He envisages a future in which there are trillions of humans gobbling up the energy of the sun in the interests of growth and innovation. I do not. Keeping the horizons of possibility open, and enabling continued intellectual innovation does not require or entail continued growth in the human population or in human energy capture. That may happen, but it doesn't have to happen. In other words, the utopian arguments I am putting forward are, at least in principle, compatible with sustainable or steady-state models of economic development.

This brings me to the third argument. This one is a little bit more technical and philosophical. Earlier, I mentioned that horizonal utopianists should embrace a plurality of better futures. In other words, they shouldn't insist on one single best possible future but rather tolerate and, if possible, enable different pathways to a better future. This is a point that Robert Nozick made much of when he discussed utopianism in his 1974 book Anarchy, State and Utopia. For some reason, the first two thirds of this book, in which Nozick criticises Rawlsian egalitarianism and endorses minimal state libertarianism, are much more widely read than the last third in which he discusses utopianism. This is a shame since Nozick's analysis of utopianism is both insightful and original. In rough outline, Nozick argues that there is no single utopian society because different people weight and prioritise different goods. Consequently, classic, blueprint utopianism is doomed to failure. Instead, Nozick argues that the ideal society will be one that allows each individual to pick and choose the form of social life that they most prefer. In other words, the ideal society won't be a single society at all but, rather, a society-generating mechanism that allows people to create communities that prioritise and favour the values that they prioritise and favour. Nozick refers to this society-generating mechanism as the 'meta-utopia'.

There are different ways in which we might build a meta-utopia. Nozick himself argues, unsurprisingly, that a constitutional order that endorses minimal state libertarianism is most consistent with the meta-utopian ideal. But this faces some obvious limitations, particularly if applied to humans living on the planet Earth. Since there is a limited territory in which people can create and implement their preferred communities, there is likely to be ongoing conflict and tension, which will actually require a lot of state intervention to police and control. For this reason, in my forthcoming book, I argue that virtual reality might provide the ideal environment in which to implement a meta-utopia.

But space could also provide such an environment. Indeed, this is effectively what Gerald O'Neill envisaged in his book The High Frontier. He argued that each O'Neill colony would be its own self-contained community, following and implemented its own preferred conception of the ideal society, officially under the control of a single agency that grants licences to build and create these colonies. Since it is, at least in principle, possible to create a vast number of O'Neill colonies (even if we limit ourselves to this solar system) we have here a way of realising Nozick's vision of the meta-utopia. What's more, this vision is fully compatible with the horizonal model of utopianism because it allows for continued innovation in modes of social existence.


4. Objections and Replies
This utopian argument for human space exploration is unlikely to be persuasive in and of itself. It only becomes persuasive if it can offer credible replies to the many potential objections one might have to it. I will close this lecture by considering six such objections.


(A) The Opportunity Cost Objection
The first objection is our old friend the opportunity cost objection. This objection maintains that it would be irresponsible to waste resources on human space exploration given the many other pressing demands on those scarce resources. We encountered this objection earlier when discussing the views of Bezos and Musk, and I gave it some weight when criticising the necessitarian argument. My point there was that if we are claiming that space exploration is morally necessary than we run into the problem that there are many other things that are morally necessary and there is no reason to think that space exploration is the most morally necessary thing to do. But now that we have switched gears to the utopian argument, I think it is worth reconsidering its merits.

The opportunity cost objection faces two basic problems. First, if we take it seriously, then it seems we must also take seriously the problem of moral demandingness. This is the problem that if we want to live truly morally unobjectionable lives, then we have to accept that a lot of what we currently do is morally questionable. Those of us who live in developed economies and have comfortable jobs undoubtedly appropriate more resources for ourselves than we truly deserve. We should be donating far more of our time and money to good causes. This is true at an individual level, and at a societal level. In fact, if we think about it, an awful lot of what we do is morally indulgent: owning a car, a smartphone, or a centrally heated home, reading books, studying philosophy, attending lectures like this (and so on), all of it is a waste of moral resources. There is so much more we could be doing.

Now, some people do take this style of thinking seriously, but when they do they end somewhere rather unpleasant. As Susan Wolf points out in her widely-discussed essay 'Moral Saints', people who dedicate themselves to living the morally best life, live pretty unpleasant and inhuman lives. They can never relax or take a moment for themselves; they must always push themselves to the limits of what is morally possible. They may live morally praiseworthy lives, but they don't live morally flourishing lives. Given this, it's not clear that we should take the opportunity cost objection too seriously. If we do, we will never be able to dedicate the time and attention we need to making possible for people to live flourishing lives. We will always be trying to avoid moral catastrophe.

Second, even if we do take the opportunity cost objection seriously, it's not clear why investment in human space exploration should attract so much ire. We waste scarce resources on many other highly objectionable projects: militarisation, deforestation, the latest Avengers movie. If we are looking to cut back, and invest resources in better causes, I suggest we take money from those projects first. Indeed, taking money from those projects and investing in space exploration may be the morally preferable thing to do, if space exploration has the utopian potential that I outlined above.


(B) The Impossibility/Impracticality Objection
The second objection is that human space exploration is impossible, or, at the very least, highly impractical. Space is dark and dangerous and humans were not built for it. We evolved to live on one planet. Once we escape the protective atmosphere of our home planet, we become highly vulnerable to solar radiation and other space-based threats to human life. It is for this very reason that many scientists prefer sending machines/robots to space instead of humans. They are much less vulernable to these extra-terrestrial threats and so much more cost effective. Using this logic, some philosophers, such as Keith Abney, have argued that we are only ever morally justified in sending machines to space.

There are three responses to this objection. First, it could be argued that enhancing the existential robustness of the human body is going to be part and parcel of the project of getting us into space. Manfred Clynes and Nathan Kline, in a famous essay in which they coined the term 'cyborg', made this very point before any human being had been successfully launched into space. They argued that the cyborgisation of the humanity was the best long-term approach to getting humans into space. This was because if could we turn ourselves into machines, then we could become better adapted to life in space (though, to be clear, we could not remove all existential vulnerabilities, as is clear from the history of the machines we have sent to space).

Second, there could be technical fixes to space habitats that enable us to live more securely and safely in space. We already have some success in this regard, with several human beings having spent extended periods of time in the International Space Station. We can build upon this by building more human-friendly space habitats. Gerald O'Neill had several proposals for creating radiation shields in his colonies that might work. At the very least, there are possibilities that are worth exploring and it should not be assumed in advance that long term living in space is a practical impossibility.

Third, it may be possible for humans to get many of the benefits of space exploration without leaving the planet. We could do this by exploring space through robotic avatars. In other words, we could allow the robots to brace the harsh environment of space and transmit their experiences to us through virtual reality headsets and haptic suits. We could then remotely control what they are doing, and have a fully immersive experience of space exploration. This would, obviously, be a technologically limited solution. The vastness of space means that teleoperation of robotic avatars is not really feasible beyond near-earth orbit. But, again, this is a possibility worth exploring and one that could help us to realise some of the utopian potential of space.


(C) The Other Horizons Objection
The third objection concedes that human space exploration is consistent with horizonal utopianism but then counters that it isn't the only project that is consistent with horizonal utopianism. We could, as I already mentioned, explore the horizons of biological form through bioenhancement, or explore new forms of life through virtual reality. In fact, so the objection goes, mightn't we be better off exploring these horizons in lieu of space? After all, space exploration is a dangerous game. If we are going to invest time and energy in any utopian projects, shouldn't we invest in the ones that have the highest chance of success?

This objection has some merit. In fact, I end up endorsing a version of it in my forthcoming book Automation and Utopia, but I would make two points in response to it here. First, it's not obvious that we couldn't invest in all these projects at the same time: indeed, spreading ourselves across different projects is arguably more consistent with the ethos of horizonal utopianism. Second, we probably shouldn't think of these projects as substitutes for one another. On the contrary, we should probably think of them as complements to one another. By pursuing one we could improve our chances of pursuing the other. I already made the point that the cyborgisation of the human condition could be part and parcel of the project of space exploration; likewise, improvements in virtual reality technology could be exactly what we need to explore space through robotic avatars.


(D) The Dehumanisation/Fragmentation Objection
The fourth objection is that by expanding into space we will erode our common sense of humanity. This is because we will fragment and splinter into different communities and colonies, and we will form an irreparable rift between the Earthbound and the spacebound. Although she was entirely clear about it, this seems to have been one of Hannah Arendt's major objections to human exploration.12 Arendt worried that moving beyond the earth would result in the loss of a shared history and shared community, and would lead to the de-centering of humankind.

Although expressed in somewhat nebulous language, this objection strikes me as a serious one. We live in an age of political polarisation and fragmentation. Through the wonders of digital technology and algorithmic mediation, we have sorted ourselves into echo chambers and filter bubbles. We are consequently losing a sense of solidarity and common purpose. We see the negative effects of this every day in our political discourse and social interactions. There is reason to worry that space exploration will exacerbate this tendency. This is particularly problematic for me, given that some of the utopian potential I see in space exploration lies in its ability to enable the creation of fragmented and self-contained space colonies (cf. the meta-utopian argument).

Still, there are a few things I would say by way of response. First, at least when viewed in the light of history, Arendt's fear seems to be misplaced. Every past expansion of human settlement could have been rejected on the grounds that it would lead to the fragmentation and de-centering of the relevant human society. For example, the expansion of European settlements from the Renaissance period onwards could have been rejected on the grounds that it would lead to the fracturing of national or European identity and solidarity. And yet this doesn't appear to have happened. On the contrary, as much as you might dislike it, these historical expansions seem to have reinforced a common sense of national and European identity. Second, at least in the short term, there is reason to hope that a concerted effort at human space exploration will be unifying rather than polarising. It will, after all, require a lot of collective effort to make human space exploration and settlement a technical possibility. Many of the people involved in the Apollo missions have said that they found the experience to be incredibly inspiring because they were banding together with like-minded souls and contributing to a common endeavour. Is it impossible for us to recapture some of that spirit? In this light, a project of human space exploration may be exactly what we need to suck us out of our filter bubbles, and avoid the worst excesses of polarisation and fragmentation.


(E) The Hobbesian War Objection
The fifth objection is that human space exploration and settlement will set up the ideal conditions for a 'Hobbesian war' in space. This is an argument that has been made forcefully by Phil Torres.13 Taking his inspiration from Thomas Hobbes, Torres argues that fragmented space settlements are likely to develop distinctive ideologies and, in the extreme, may even evolve into separate species. Because of this they will grow suspicious of one another and worry about the possibility of other settlements attacking them and taking away what they have built for themselves. They will consequently be tempted to launch pre-emptive attacks to preserve themselves, which could quickly lead to an all out space war. On Earth, we prevent this collapse into anarchy by creating strong centralised governments that keep the peace (a 'Leviathan' to use the Hobbesian terminology). The problem, according to Torres, is that it will be practically impossible to create and maintain a Leviathan-like order across the vast distances of space. The speed of communication and travel between space settlements will make it very difficult to police and enforce the peace. Torres takes this reasoning to some extreme places, suggesting that in the end space settlements might create some apocalyptic weaponry that make nuclear weapons look like firecrackers. This then leads him to conclude that every minute that we delay human exploration is a good minute.

There are at least three things worth saying in response to this. First, Torres relies on some highly speculative reasoning when considering what will happen in space settlements and what kinds of weapons they will develop and have access to. While this speculation may turn out to be correct, it should be treated with due scepticism and weighed appropriately against more optimistic speculation. Second, several of the assumptions that Torres makes can be challenged. For example, his claim that space settlements will grow suspicious of one another and be motivated to launch preemptive attacks is questionable. Quite the opposite could be the case. Good fences make for good neighbours and it is hard to imagine a better fence that the cold expanse of space. Similarly, Torres claim that it will be impossible to create a Leviathan in space is probably only true if human space settlements are widely separated. If we implement the O'Neill/Bezos vision of orbiting space colonies, the distances will be much more human-friendly and hence much more conducive to policing and enforcing the peace. Third, it's also worth weighing the risks of space settlement against the risks of staying put on Earth. Although I have tried to avoid making this argument throughout this lecture, human existence could be threatened if we stay here on Earth, either due to dwindling resources or climate change, and this could also provide the ideal conditions for conflict and strife. Even if space exploration also carries a risk of conflict, we may be better off running that risk.

(F) The Tyranny Objection
The sixth and final objection is that life in space would be unpleasant because the governments in space settlements will have to be tyrannical and to seriously curb human freedom. This objection has been made, at considerable length, by the astrobiologist Charles Cockell 14. Cockell makes quite a number of interesting arguments but his core argument is this: a tyrannical government is one that interferes with its citizens (e.g. by limiting their behaviour and punishing them if they step out of line). Citizens have certain strategies they can exercise in response to this tyranny: (i) they can acquiesce to the interference, i.e. they can align their preferences with the government's preferences; (ii) they can take the Stoic retreat, i.e. ignore the outside interference and try to achieve inner peace of mind; (iii) they can protest or rebel against the government and (iv) they can physically escape from the clutches of the government. Of these, arguably only the last two are consistent with maintaining human freedom in the face of tyranny. Cockell then argues that in these strategies will not be available to the citizens of tyrannical governments. In fact, of the four strategies, the one that citizens are most likely to exercise is the first: i.e. acquiescence to the demands of tyrannical governments.

Why is this? The problem, as Cockell sees it, is twofold. First, the habitats we establish in space will be fragile and vulnerable things. For example, any damage to the the oxygen supply on a Mars colony could be fatal to all the humans living there. Second, as a result of this, the Mars government will have to police and enforce a very strict set of rules to prevent any damage or sabotage to its life supply system. In fact, it's not just that. They will also probably have to ensure that every member of the colony plays a part in maintaining those life supply systems.15 There is little room for dissidence or rebelliousness. As Cockell puts it, these space societies will tend to be highly collectivist, not individualist. Any individual who finds themselves as odds with the government will have limited scope for expressing their views. They cannot escape the colony because they would die outside its protective enclosure; they cannot protest or rebel because the government will act quickly to stamp out protest and rebellion; and they cannot beat a Stoic retreat because meditative equanimity is a luxury that cannot be afforded when an entire community is living on the knife-edge. So they will be forced to acquiesce. The result is a significant loss of freedom and a dulling of individuality.

I think Cockell is right to explore the unwelcome features of future space governments, but there are several things to be said in response to his critique. First, it is worth noting that at least some people will find the collectivist nature of space colonies uplifting and inspiring. They will like the idea of banding together towards a common set of purposes an advantage, not a disadvantage of such an existence. Second, Cockell paints life in space in the worst possible light. It's not clear that things will be as bad as he supposes. For example, life inside a space habitat may not be as fragile as he claims, nor need it be impossible for someone to escape the colony. A future in which there are thousands of O'Neill colonies in near-Earth orbit may allow for easy transport back and forth between different colonies. Furthermore, the vulnerability to which Cockell appeals is largely a function of our biological form. If we end up exploring space in a non-biological/cyborg form, then this may not be an issue. Finally, as Cockell himself notes, freedom is complex value, not a simple one. None of us is ever perfectly free. Instead, we must trade different dimensions and forms of freedom (e.g. positive and negative) off against each other. It's quite possible that space exploration may help us to maximise some forms of freedom, while forcing us to compromise on others.


5. Conclusion
So where does that leave us? I doubt I have eliminated all the cynicism from your souls, but I hope I have at least encouraged you to take the utopian potential of human space exploration more seriously.


  1. I'll use the word 'manned' spaceflight throughout this lecture in order to distinguish the kind of space exploration in which I am interested from space exploration conducted primarily by robots or machines. I use 'manned' in preference to 'crewed' (which is one non-sexist alternative) because in spoken form 'crewed' is a homonym of 'crude' and so might create a misleading impression among those who are listening ↩︎
  2. All details of Bezos's view come from his May 2019 presentation at Blue Origin, readily available on youtube ↩︎
  3. This is the vision of the future one finds in Neil Blomkamp's Elysium: wealthy elites live in fancy O'Neill colonies while the masses suffer on the planet's surface ↩︎
  4. See for example Milligan, T. (2015). Fear of Freedom: The Legacy of Arendt and Ballard’s Space Skepticism. In The Meaning of Liberty Beyond Earth (pp. 33–45). Cham: Springer, Cham. http://doi.org/10.1007/978-3-319-09567-7_3; and Schwartz, J. S. (2016). Our Moral Obligation to Support Space Exploration. Environmental Ethics, 1–22; Schwartz, J. S. J. (2014). Prioritizing scientific exploration: A comparison of the ethical justifications for space development and for space science. Space Policy, 30(4), 202–208. http://doi.org/10.1016/j.spacepol.2014.08.010 ↩︎
  5. For examples of this, see the articles by Schwartz 2011, Abney 2017 and Ketcham 2016 ↩︎
  6. This isn't entirely fair to Bezos. Although Bezos was criticised for his relative lack of philanthropy until recent times, he has responded to those criticisms and in fact became the top US philanthropist in 2018, focusing mainly on educational philanthropy. See https://www.theguardian.com/technology/2019/feb/26/jeff-bezos-philanthropy-donations-top-50 ↩︎
  7. Although I do think it is flawed for reasons I set out in my forthcoming book Automation and Utopia ↩︎
  8. Yorke says that this means all utopian projects should ensure that no one is made worse off in the process of societal reform, but this could be very difficult to guarantee in practice and indeed may end being dangerously close the conservative position he and other horizonal utopianists seek to avoid. ↩︎
  9. This is an odd idiomatic phrase but I presume the contradiction is a deliberate witticism ↩︎
  10. This is an argument I take from Christopher Yorke. ↩︎
  11. Crawford's argument is good deal more elaborate than this. He identifies specific forms of scientific knowledge we are likely to acquire and develops a theory of artistic innovation based on Karl Poppers 'three worlds' model of human existence. Roughly, Crawford argues that artistic innovation always arises as a result of an interaction between the mind (world 2) and the environment around it (world 1). If the mind has new experiences, it can develop new artistic constructs (world 3). The same basic theory applies to the development of new ethical and political theories ↩︎
  12. I owe this interpretation of Arendt to Tony Milligan ↩︎
  13. Torres, P. (2018). Space colonization and suffering risks_ Reassessing the “maxipok rule.” Futures, 100, 74–85. http://doi.org/10.1016/j.futures.2018.04.008 ↩︎
  14. See his book Extra-Terrestrial Liberty (Edinburgh: Shoving Leopard 2013) ↩︎
  15. Relatedly, Gerald O'Neill, in The High Frontier envisaged a national service equivalent for all members of space colonies ↩︎