Showing posts with label Cosmic Philosophy. Show all posts
Showing posts with label Cosmic Philosophy. Show all posts

Wednesday, February 19, 2014

The Russell Stannard Questions: Life

The following questions (Q) are taken verbatim from those poised by Russell Stannard in his 2010 book The End of Discovery [are we approaching the boundaries of the knowable?]; Oxford University Press, Oxford. I consider these typical of the sorts of modern Big Questions that are part and parcel of the philosophy of modern science, especially physical science.

My answers are based mainly with the thought of our being in a Simulated (Virtual Reality) Universe that has been constructed by one or more Supreme Programmers. However, some of the answers apply regardless of what the nature of our ultimate reality is.

Q. Why is the universe life-friendly?

A. The universe is both bio-friendly and not bio-friendly. 99.999% (add a few more 9’s here) of the cosmic environment is decidedly bio-unfriendly and would snuff you out so quick-smart you wouldn’t know what hit you. Of course the cosmos is also bio-friendly otherwise you wouldn’t be here reading this. If you reject a supernatural explanation, that leaves coincidence, a multiverse, or software. Coincidence is stretching things since there are just so many dials that have to be set to a very narrow range. The multiverse appeals to probability statistics – think of those millions of monkeys at millions of typewriters one of whom will type “Hamlet” word-for-word – eventually. That leaves software, or in other words a Supreme Programmer programing our universe in a bio-friendly way. 

Q. Is there extraterrestrial life, and if so, how do we humans stand in comparison as regards intellectual capacity?

A. Given the vastness of the cosmos, and the sheer number of galaxies in the observable cosmos, and the numbers of stars per galaxy with associated solar systems and the number of planets per solar system not to mention possible rogue/orphan planets and how interstellar cosmic organic chemistry associated with life is, well, cosmic, etc., you would have to be pretty brave to bet the family farm arguing Planet Earth being the proverbial cosmic IT when it comes to life. Even going up the chain from the origin of life ‘living’ molecules to unicellular life to multicellular life to intelligent life to technologically advanced life forms and advocating extreme difficulty in getting from one step to the next step on up the line, there must be – if you’re a betting person – millions of advanced extraterrestrial civilizations throughout the cosmos and a goodly number in our galaxy too. Further, we humans are the new boys on the block, so the odds are that any other extraterrestrial intelligences will have been around way longer that we have, and thus have evolved greater intellectual capacity that we have yet achieved. However, the interesting bit is that once intelligence is achieved, natural selection gives way to artificial selection, and part of that artificial selection might ultimately be the transition from biological intelligence to artificial intelligence, artificial intelligence which will further evolve via artificial selection as machine intelligence designs ever better machine intelligences.


Sunday, February 16, 2014

The Russell Stannard Questions: Cosmology

There are many Big Questions in science, many of which go back to the ancients, even back into prehistory in all probability. One of the best modern set I’ve found recently were sidebars in a book by Emeritus Professor of Physics at the Open University, Russell Stannard. These are my answers, thoughts and commentary to those Big Questions. Many readers might have ‘fun’ trying to come to terms with these in their own way based on their own worldview.

These are the Russell Stannard Questions* on or about cosmology:

Q. How close to the instant of the Big Bang are we likely to be able to probe?
A. We can currently probe or observe no farther back than 380,000 years post Big Bang because the cosmos was too opaque from the point of the Big Bang to roughly that point in time, 380,000 years into the post Big Bang era. However, gravity waves from the Big Bang event could take us to Ground Zero in theory. The problem is in the detection of gravity waves – in theory yes; in terms of actual observation (to date), no. Of course that hasn’t stopped theorists from going back to even less than nanoseconds post Big Bang by running the expanding universe film backwards to the greatest extreme possible, thus postulating and assuming a quantum sized object was at the heart of the Big Bang. Theorists have extrapolated back way beyond what is reasonable or even logical IMHO given so many unknowns. Theory should cease where currently observations cease – 380,000 post Big Bang. 

Q. Can we be sure that inflation took place?
A. No, because we weren’t there! Seriously, we have no direct observational evidence of inflation, only indirect evidence that a theory or theories of inflation can explain some observations (or lack of observations, like where are the monopoles). This reminds me of those epicycles once postulated to explain observations related to the motions of the planets in the night skies. Those epicycles eventually bit the dust; inflation might too. 

Q. If so, how are we to choose which type of inflation it was?
A. Pick a card, any card! Whatever theory of inflation best matches the observations and best conforms to what is known about the laws, relationships and principles of physics goes to the head of the class. 

Q. Was there a singularity at the instant of the Big Bang?
A. No, there was no singularity associated with the Big Bang event. A singularity in common usage by physicists implies a region of space that has zero volume and infinite density. Sometimes I think these eggheads need to observe the real world where volumes and densities are finite. In any event, the density at the point in existing space where the Big Bang happened had to be less than that of a Black Hole, otherwise there would be no ‘bang’. That in turn implies the Big Bang was a macro event, something that happened way outside the realm of quantum physics.   

Q. Does it make sense to enquire into the cause of the Big Bang?
A. Yes, absolutely! There had to have been a cause, physical or software, and it is quite legit to ask what that cause was and try to answer the question. Of course I never said that would be easy.

Q. Are there universes other than our own?
A. If you reject the supernatural and the software and coincidence, then you are left with the multiverse scenario to explain why we are here. We are in the one successful universe that produced that word-for-word typing of “Hamlet” by those millions of monkeys.

Q. What is the nature of dark matter?
A. Dark matter doesn’t actually exist. It is inferred only because the fallible Supreme Programmer made an ‘oops’ when programming the minimum required for the cosmic background wallpaper in our Simulated (Virtual Reality) Universe.

Q. How are we to account for the observed value of the dark energy?
A. There is only ‘dark energy’ if the Universe is really accelerating when it comes to the expansion rate of the Universe. Cosmologists had to invent some sort of explanation for this anomalous observation, so why not call it ‘dark energy’ even if they haven’t the foggiest idea what it actually is. Now you know, and I know, that the Universe cannot be expanding at an ever accelerating rate due to that little factor we all acknowledge called gravity. Gravity exists; so-called ‘dark energy’ is theoretical, ad hoc, an epicycle and iffy at best. An accelerating Universe is like your car going uphill at an ever faster and faster rate without you putting the pedal to the metal. I’m reasonably certain that what has been interpreted as the expansion rate of the Universe accelerating has some other explanation. Perhaps not all type 1A supernovae are really peas-in-a-pod and thus are not the standard candles we think they are. Perhaps the velocity of light isn’t a constant after all and changes over cosmic time. That would throw one heck of a monkey wrench into the scenario. So, ‘dark energy’ doesn’t have a value since the Universe isn’t really accelerating. If, however, the [Simulated] Universe really is accelerating, then that’s obvious evidence for our Supreme Programmer screwing up the cosmic background wallpaper software. It’s just an ‘oops’, an oversight in overlooking the consequences of programming this variable at this value instead of some other variable at some other variable.

Q. Does the density of the dark energy remain constant with time?
A. There is no ‘dark energy’ IMHO so the question has no relevance. However, if the value or density of the alleged ‘dark energy’ is allowed to vary over cosmic time, then one could just about explain any observation relating to any value of the expansion rate of the Universe.

Q. Is there a connection between today’s repulsion of the galaxy clusters and the period of inflation?
A. If there was such an animal as inflation that happened quick-smart and cheek-by-jowl with the Big Bang event, well some force or other had to be responsible for blowing up that cosmic balloon. Fast forward to today and we see galactic clusters moving away from each other as if each had a bad case of B.O. Again, there must be some force acting on these clusters repelling them. I though conventional wisdom put that down to the so-called ‘dark energy’ but if there really is a ‘dark energy’ and if there really was a repulsive force that drove what we allege was cosmic inflation, it might be odd if the two repulsive forces in question didn’t share some sort of physics ancestry assuming they aren’t exact clones.

Q. Is the universe infinite in size, and if so, what exactly does that mean?
A. The universe is infinite in size solely on the philosophical grounds that one can always ask the question ‘what is beyond’ this barrier or at right angles to where I am. There always is a beyond, even if you have to postulate a higher dimension to get there, as it inhabitants of 2-D Flatland can escape by going into the third (higher) dimension that’s so familiar to us. In the Simulated (Virtual Reality) Universe scenario, well we’ve probably all seen computer/video games that have a wraparound feature. Something goes off the screen to the right or at the top and reappears at the left or at the bottom. That’s an infinite loop. To the inhabitants, it’s an infinite size where you can go round and round the mulberry bush for all eternity.
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*The following questions were taken verbatim from those poised by Russell Stannard in his 2010 book The End of Discovery [are we approaching the boundaries of the knowable?]; Oxford University Press, Oxford. I consider these typical of the sorts of modern Big Questions that are part and parcel of the philosophy of modern science, especially physical science.


Saturday, November 9, 2013

Neil DeGrasse Tyson on UFOs: Some Comments

Sooner or later, nearly every astronomer, especially if they have a relatively high public profile, has got to face the UFO issue and expound upon whether there is any scientific credibility to the idea that some UFOs are bona-fide alien spacecraft. One such astronomer, Dr. Neil deGrasse Tyson of the Hayden Planetarium, New York City, has indeed made his point of view known. He doesn’t deny the theoretical possibility, but that is about as far as the credibility goes. I take issue with some of his opinions as this essay details.

When it comes to the emotive subject of UFOs (as in alien spacecraft), scientists just don’t want to know or enter into the debate if it can be possibly be avoided, for the prime reason that those who make the UFO = alien spaceship equation fail to either put up or shut up. That’s ‘put up’ in terms of the sorts of evidence that scientists tend to have to ‘put up’ when they make claims. If they have to ‘put up’, they expect in turn that others will ‘put up’ evidence to them. The scientific consensus is that UFO = alien spaceship buffs haven’t done an adequate job in the ‘put up’ department. One such scientist with that point of view (POV) is the fairly well known astronomer, Dr. Neil deGrasse Tyson. While overall reasonably correct in that POV, some of his arguments are flawed and lack credibility in my POV.

When it comes to evidence for this or that explanation for a UFO sighting, especially the UFO = alien spacecraft explanation, eyewitness testimony is suspect. Or so relates astrophysicist Dr. Neil deGrasse Tyson via several YouTube clips relevant to his take on UFOs. But wait, there’s more!

Dr. Tyson quite correctly points out that the “U” in UFO stands for “unidentified” and that’s as far as anyone seeing, what to them is an Unidentified Flying Object, can expound upon. One should not jump to the conclusion that “U” equals alien spacecraft. No argument there. However, he also points out, an equally valid comment, is that we don’t like mysteries like things that are unidentified and so therefore we do tend to jump the gun and jump to unwarranted conclusions in order to identify the unidentified and maybe unidentifiable. No argument from me there either other than to point out that we leap to the conclusion of UFOs = alien spaceships in favour of some other explanation probably because there must be something suggestive of that possibility; there’s something in the observational date that points to alien ships and not to something else.

He notes that there exist natural phenomena and conditions which can befuddle someone not familiar with those phenomena. No argument on that observation either.

HUMAN PERCEPTION

But he goes slightly off the rails by suggesting the least likely form of bona-fide evidence is human perception or eyewitness testimony. Optical illusions are a case in point as he delights in pointing out. However, relative to manmade or designed optical illusions, there are not all that many natural ones, although there are some of course, like mirages or that ‘sinking’ ship as it passes beyond the visible horizon.

I get the impression from Dr. Tyson’s comments that eyewitness testimony has as much reliability as a $7 bill. Human perception is absolutely 100% fallible. Although eyewitness testimony is a cornerstone in legal proceedings, courtroom lawyers have a field day in discrediting eyewitness testimony. Experiments by psychologists prove overwhelmingly that any sudden and unexpected event witnessed by ten people will result in ten different versions of what happened, but not drastically so. I mean ten witnesses will differ on the height, weight and attire of the person in the unexpected happening, but they won’t differ on the fact that it was a human and not an elephant!

Humans are actually pretty good when it comes to the details, otherwise why would law enforcement officials ask you to point out the criminal in a police line-up or the news reporters question witnesses to some unusual news happening? To take just one of thousands of possible examples, you can easily tell your face from your parent’s faces and from the face of every other person you know (in person) or have frequently seen (like Dr. Tyson’s on YouTube). You know a new and different face when you see one. You can tell a human face from say a reconstructed one of Homo erectus. You can distinguish a primate face from a feline face from a canine face from a bovine face. You can tell apart the face of a penguin or an eagle from their ancient ancestor, the T-Rex. If you can’t tell apart a frog face from a crocodile face from a shark face from a spider’s face, there’s something seriously askew. Assuming there’s nothing askew; you can tell apart all these examples of faces despite the fact that they are all faces.  

Therefore, in your day-to-day life, 99.9% of what other people tell you they saw (i.e. – Joe Blow drinking down at the pub) you’ll believe them. Human perception is flawed, but it’s all you got for all practical purposes – despite zillions of smart-phone cameras around snapping anything and everything. People don’t tend to tell you they saw Joe Blow at the pub AND show you their smart-phone camera picture of Joe Blow at the pub since you obviously wouldn’t believe them without the pictorial backup. 

In any event, perception in humans usually tends to be more than adequate, say when driving a car or playing a game of baseball. Humans have an excellent innate ability to judge height, depth, colour, direction of sound, types of sounds, motion, velocity (speed plus direction), etc. We’d better have those skills if we are to survive day-to-day; week-to-week; month-to-month; etc. from birth through death.  

THE GAME OF TELEPHONE

Dr. Tyson makes much of the child’s game of ‘telephone’ and how that relates to evidence of how unreliable eyewitness (or ear-witness) testimony is. It’s that version of someone who told someone, who told someone, who told someone, who told someone, who told someone, etc. etc. That story that goes in ear number one ends up usually bearing little relation to what the last person in the chain relates what they were told. Cases where someone who told someone repeated many times over on down the line are indeed suspect, but that’s not usually the case with UFO sightings. ‘Telephone’ is actually pretty irrelevant to UFO reports since the chain is usually just a chain of one link between two individuals – the UFO witness relates firsthand their story to the UFO investigator. There’s no twenty-something someone who told someone links here. Direct first-person testimony is written down or otherwise recorded for posterity.

THE INEXPERIENCED LAYPERSON

Dr. Tyson makes the point that average Joe Blow citizen isn’t usually all that familiar with astronomical and meteorological and optical phenomena and thus sightings of lights in the sky are frequently misinterpreted – Venus becomes an alien spaceship. However, not all UFOs sighted are reports of dot points of lights in the sky. UFOs have been seen close up on the ground and often exhibit a substantial disc when seen in the sky. That’s why the late Dr. J. Allen Hynek (who was a pioneer in the scientific study of UFOs while also an astrophysicist like Dr. Tyson) came up with that category of UFO sightings called “close encounters” where misidentification of say a star for an alien spacecraft is unlikely since a star never exhibits a substantial 2-D or 3-D geometric shape.

ABDUCTIONS

Dr. Tyson also suggests (tongue-in-cheek?) that if you are abducted, you grab (steal) something off the alien’s shelf in order to back up your claim with something that can be put on the slab in a lab for independent testing. That’s flawed for several reasons. Assuming you’ve been abducted by aliens, you’ve got to think of it at the time under rather trying circumstances. That’s if you’re not naked on the slab being poked and prodded – you have no pockets available in which to squirrel something away, assuming there is anything in arm’s reach to squirrel away in any event. That’s also assuming you are not being watched. Even if you do nick off with something, elements and compounds tend to be uniform across the cosmos so an alien ashtray or knife could be made of the same stuff as a terrestrial ashtray or knife. Any alleged alien artefact would clearly have to be of such a nature as to rule out any terrestrial origin or a hoax. It’s a sensible suggestion but a way more likely bet is that any alleged UFO abductee would pick up alien micro-organisms which might be detectable and cultured as evidence.  

ALIEN PSYCHOLOGY

One obvious flaw in Dr. Tyson’s reasoning is that, according to Dr. Tyson, if UFOs are alien spacecraft, why should said aliens land in a farmer’s field as opposed to something more visible like touching down in Times Square (New York City). Well, aliens, by definition, are alien and will have alien motives; an alien psychology. We cannot determine before the fact how aliens should behave since we have no studies to hand on alien wetware, alien neurochemistry and alien motivations.

INEPT ALIENS: SHIT HAPPENS

Dr. Tyson also ridicules UFOs as alien spacecraft by noting the [Roswell] crash. How can advanced high-tech aliens navigate and travel across the galaxy then end up crash-landing? They must be pretty stupid inept aliens. Actually, it is in this case, an unusually inept example of reasoning by Dr. Tyson. Dr Tyson - shit happens! How many UFOs (if alien spacecraft) haven’t crashed? Nearly all would be an appropriate answer. And how many of our Mars-bound probes have coasted safely through the relative vastness of interplanetary space only to crash onto the Martian surface at the final moment.  Sometimes, albeit rarely, we have aircraft crashes. Most times aircraft don’t crash. If terrestrial shit happens, extraterrestrial shit happens. These are fallible aliens, not infallible deities.

In conclusion, Dr. Tyson’s various YouTube presentations are clearly his standard answer to the UFO question and his well rehearsed monolog on the subject. They were pure showmanship – witty, highly entertaining, but, alas scientifically barren. His presentations contributed nothing to furthering the coming to terms with the bona-fide UFO phenomena. As the saying goes, “if you’re not part of the solution, you’re part of the problem”.

P.S. By the way, Dr. Tyson also made a big issue of why UFOs would need runway lights as in the film “Close Encounters of the Third Kind”. I need remind people here that the movie was a science fiction film and not a documentary. Any fault in logic lies solely and squarely on the shoulders of those who made, produced and directed the movie.


Sunday, June 30, 2013

More Cosmic Random Thoughts

* In our Universe there are two kinds of astronomical objects. There are cosmic faucets like stars and anything else that gives off or reflects electromagnetic (EM) waves. That’s the cosmic “In Tray”. Then there are cosmic sinks and drains that absorb electromagnetic waves – Black Holes, the cosmic “Out Tray”.

It would seem to me that over the course of 13.7 billion years, an awful lot of EM (light, IR, UV, radio, microwave, gamma-ray, etc.) photons, not to mention neutrinos and cosmic rays, would have gobbled up and removed from the Universe’s inventory by being sucked into and forever residing in the insides of Black Holes. Since all astronomical observations, hence conclusions about the state of the Universe, rely on the detection of that which is emitted or reflected by cosmic faucets, then it stands to reason that in order to arrive at valid conclusions, what cosmic sinks and drains remove from the Big EM Picture must be taken into account. But is it? I’ve never read any account where the removal of EM photons from the Universe’s inventory has been considered.   

One example that springs to mind is the minor temperature variations in the cosmic microwave background radiation (CMBR) – perhaps those slightly cooler spots are due to a large Black Hole between our measuring device and the CMBR that is sucking up those microwaves before they reach our measuring telescope or space probe or high altitude balloon. I seem to recall cosmologist George Gamow back in the 1940’s making a theoretical prediction that the (then undetected) CMBR would be somewhere between 5 to 7 degrees Kelvin, instead of the roughly 2.7 degrees Kelvin that eventuated. Perhaps, the overall cooler than Gamow expected CMBR is due to Black Holes sucking up lots of those CMBR photons over all those billions of years.

oooooOOOOOooooo

* To be honest, I reject the idea that space itself is expanding. To me distant galaxies are expanding farther and farther apart throughout an already existing space. That makes way more sense. Expanding space appears to me to be a case of getting a free lunch – something from nothing – in violation of standard conservation principles.

Further, I see nothing in Einstein’s relativity equations that turns space into stuff. That is, how do Einstein’s relativity equations give space the property of elastic fabric or of rubber? It’s nonsense. I mean you can move through space without hindrance.

Is there any actual observational evidence that proves conclusively that it is space expanding and not cosmic flotsam and jetsam moving apart through existing space? Not to my knowledge but I can think of a possible test that might conclude the issue. Two objects receding apart, like the Earth and the Moon (due to tidal forces) are going with the expanding space grain and should be separating more rapidly than otherwise would be the case due to tidal forces alone. The experiment, measuring the increasing Earth/Moon separation should be a relatively easy experiment to do. Due to the reflective mirrors left on the lunar surface by the Apollo moonwalkers we know the Earth-Moon distance to extreme precision. It should be straightforward whether the Moon is receding from the Earth faster than tidal forces can account for.  

oooooOOOOOooooo

BINGO! EXPANDING SPACE? NOT!

In an effort to explain about the concept of expanding space, astronomer Philip Plait inadvertently presented the exact opposite argument which is that space can’t be expanding (and therefore the expanding universe must be expanding throughout existing space), a point of view I’ve been advocating seemingly forever. Here’s Plait’s extract.

“Space expands, but this expansion can be countered by gravity. You might expect that, say, two stars orbiting each other will get farther apart as space expands between them. However, that’s not the case. Since the two objects have gravity, and they are bound to each other – that is, their gravity holds them together – space doesn’t expand between them.” [Plait’s emphasis.]* 

*Plait, Philip; Death from the Skies! These Are the Ways the World Will End…; Viking, New York; 2008; p.278: 

So, taken to its logical conclusion, space is not expanding between the Earth and the Moon. Space is not expanding between the Earth and the Sun. Space is not expanding between the Sun’s solar system and the triple star Centauri system. Space is not expanding between the Sun and the centre of the Milky Way Galaxy, space is not expanding between the Milky Way Galaxy and the Andromeda Galaxy, space is not expanding between the local group of cluster of galaxies (containing the Milky Way and Andromeda) and the nearby Virgo Cluster of galaxies, etc. Any two bits of matter have mutual gravity and so therefore there can be no expanding space anywhere, since gravity is everywhere.

oooooOOOOOooooo

* If an electron acquired enough mass (say by being accelerated to near light speed), would it become a Black Hole, and if so, would the ‘inside’ still be an electron, which after all, is considered a fundamental particle? 

oooooOOOOOooooo

* Space is not the final frontier. The ultimate challenge is to ‘boldly go’ past the event horizon of a Black Hole and see what’s to be seen. 

oooooOOOOOooooo

* Why is there something rather than nothing? Let’s say there’s a 50-50 probability between a universe that contains nothing and one that contains something. Or even make the ratio 60-40 or 99-1 or even odds of a billion to one, as long as the probability of a something universe isn’t zero. Then, well that’s something to be said for a something universe. Now a nothing universe isn’t bio-friendly and a something universe can be, so since we’re a friendly bio-entity that must mean we live in a something universe. So, as far as we are concerned, that’s what there is something rather than nothing, because if there was nothing we wouldn’t be here to ponder the issue.

Monday, June 10, 2013

A Cosmos Unto Infinity: Part Two

The nature of, the size, the shape and the duration of our Universe has been speculated and debated upon ever since humans gazed in wonder at the night sky. Though ideas have waxed and waned, and though modern cosmology is more focused than ever on actual observations, speculations, well that’s still the case today. My take, albeit slightly more philosophically inclined, is that our Universe is just part of an overall infinite in space and infinite in duration cosmos. 

Continued from Part One

As we noted in the example of the fridge and your body, it takes energy to reverse entropy or at least hold it at bay. A reversal of entropy is sort of like that closed box with Maxwell’s Demon (representing energy) that controls a slot that the Demon can either open or close that’s in the middle of that closed box that’s of a uniform temperature.  The Demon opens the slot whenever a rapidly moving (hot) molecule heads toward the left side or when a slower moving (cold) molecule heads toward the right side. After a while, the left side of the box will be containing just hot stuff (rapidly moving molecules) and the right side cold stuff (slowly moving molecules). Maxwell’s Demon is like a kid expending energy sorting a bag of 1000 various coloured marbles (maximum disorder) into piles of reds and greens and blues and yellows (maximum order).  Of course our infinite cosmos contains no demons, and marble-sorting kids need not apply if there’s ever a job ad for restoring order to an infinite cosmos.

Okay, without demons (or entropy reversing kids), our infinite cosmos heads towards a state of maximum entropy or maximum disorder or maximum uniformity. The cosmic temperature will be the same everywhere; matter will be evenly distributed. But, can an infinite cosmos ever reach such a state? It could or should take an infinite amount of time, but that’s also assumed. 

Yet alas, what even an infinite cosmos needs is a Maxwell’s Demon. The cosmos, if it is to retain a state of vitality for an infinite duration, needs something that recycles stuff that’s at maximum entropy (maximum disorder) back to the basics of minimum entropy (or minimum disorder) where useful things can continue to happen.

* The Role of Gravity

Gravity seems to be a Maxwell Demon’s kind of force that keeps on keeping on. As long as you have two bits of matter, even just two electrons, you have gravity. Radiation (electromagnetism) could be dispersed evenly in infinite space over infinite time, but it is hard to imagine that situation with gravity. The only real way gravity could be rendered inert and useless as an energy source would be if it was 100% concentrated in just one place – like a super ultra mother of all cosmic Black Holes. The only other way gravity could be nullified would be in matter were distributed so absolutely evenly such that every bit of matter were being gravitationally pulled on absolutely evenly in each and every direction. But the slightest nudge or deviation from this ideal theoretical state (inevitable given quantum fluctuations) would throw everything out of equilibrium. But because matter is energy and energy is matter, if gravity can disrupt the distribution of matter from a state of near perfect uniformity, then energy will follow the short and curly material bits. Light (photons) reacts to gravity as much as electrons do. Further, the one extra nice property that gravity has is that it can’t be blocked. You can block out light or shield yourself from electromagnetic effects, but nothing will shield you from gravity.

* The Recycling Role of Radioactivity

Fortunately, there are several basic ways of recycling complex cosmic stuff back into the cosmos in the form of simple stuff. The first of these however has issues. Gravity can contract and pull together interstellar gas and dust into a proto-star which will ignite under pressure via thermonuclear fusion to form a radiant star. Stars however fuse lighter elements into heavier elements, and when a star goes nova, or becomes a supernovae, those heavier elements increasingly form the next generation of interstellar gas and dust. Eventually, after many generations of enrichment, interstellar gas and dust is lacking in those lighter elements (mainly hydrogen and helium) which easily undergoes fusion. Heavy elements, like iron, just won’t fuse any more and so the continued formation of radiant stellar stuff grinds to a halt. But, there is an escape clause.

Among the heavy elements; elements that stars manufacture, are radioactive elements with unstable atomic nuclei. Radioactive decay re-releases back into the cosmos those fundamental bits and pieces that can reform into those lighter elements that are the basic building blocks for forming radiant stellar objects. There is cosmic recycling from the simple to the complex and back to the simple again.

* The Recycling Role of Cosmic Black Holes

The second way of cosmic recycling is, believe it or not, via cosmic Black Holes. Astronomical Black Holes, via the vacuum energy (quantum foam or fluctuations) and quantum tunnelling, can release elementary particles back into the cosmos. As mentioned earlier, this is known as Hawking Radiation, after theoretical cosmologist/astrophysicist Stephen Hawking. Complex stuff can go into a Black Hole, but just very simple stuff ultimately comes back out again.

* The Recycling Role of Life

Life can be an entropy buster as in the case of Maxwell’s Demon, the kid who sorts the marbles, the mum who does the housework, the bird or beaver who gathers up forest debris to make a nest. But, it takes outside energy to accomplish these things and at the end you haven’t decreased complexity – the marbles are still marbles; twigs are still twigs. But microbes like bacteria, etc. can break down complex stuff (like twigs) and turn it into less complex stuff which can be recycled into hundreds of new and different complex things. So, when our home planet eventually meets its Waterloo, and gets scattered back into the cosmic winds, thanks to bacteria, there will be more simple stuff floating around than would otherwise be the case

So complex stuff gets recycled back into simple stuff, all brought together again by gravity to ultimately form complex stuff again. The cosmos receives recycled stuff back, from which it can keep on keeping on!    

* A Fly in the Ointment

In a cosmos that’s both infinite in space and infinite in duration, here’s an interesting ‘angels on the head of a pin’ question. There are two forces which in theory can extend their influence indefinitely, that is, unto infinity. They are electromagnetism (of which light is a prime example) and gravity. So, can the influence of a force cross an infinite space if it has an infinite amount of time to do it in?

Perhaps Maxwell Demon’s ‘closed box’ isn’t really an appropriate ‘container’ for an infinite cosmos. If the cosmos is infinite, can it be described as a closed system? 

The Multiple You

And so finally, consider and reconsider the quantum mantra: “Anything that isn’t forbidden is compulsory; anything that can happen will happen”. That’s even more the case when you have infinite time and space to play around with! So, I add to that mantra “and will happen again and again and again, an infinite number of times”. That actually means, or at least very strongly suggests that every possible scenario, every possible history, and every possible variation on each and every scenario or on any theme that you care to think of or think up will happen again and again and again. That, by the way, includes you. You are a scenario, and you, and every possible variation of you and your history will transpire numerous times; actually an infinite number of times. If that isn’t spooky, I don’t know what is, but it’s a logical consequence of having an infinite cosmos. 

Sunday, June 9, 2013

A Cosmos Unto Infinity: Part One

The nature of, the size, the shape and the duration of our Universe has been speculated and debated upon ever since humans gazed in wonder at the night sky. Though ideas have waxed and waned, and though modern cosmology is more focused than ever on actual observations, speculations, well that’s still the case today. My take, albeit slightly more philosophically inclined, is that our Universe is just part of an overall infinite in space and infinite in duration cosmos. 

In the infinite beginning there was something rather than pure nothing – a finite amount of something in an infinite void of nothingness. This scenario eliminates the philosophical quandary of what’s beyond the boundary - that only other alternative. This eliminates the philosophical quandary of how much stuff there is. An infinite amount of stuff doesn’t leave you much elbow room.

In the infinite beginning, well there was no beginning; there can ever be an end. No Alpha – no Omega. This eliminates the philosophical quandary of what comes before the ‘beginning’ and what comes after ‘the end’. 

Okay, having postulated an infinite cosmos in space and in duration, well, other certain and not so philosophical issues come to the fore. If they can be addressed, well that’s all to the good. If not, well it’s back to the drawing board.

I’ll start with…

Olber’s Paradox

The night sky should be as bright as the daytime sky since in whatever direction you look, sooner or later you should see a star or galaxy that’s in your line of sight. That’s Olber’s Paradox because the night-time sky isn’t as bright as the daytime sky. One resolution is that our observable Universe is finite and there are only a finite number of stars and galaxies and thus, there will be lines of sight that do not intersect with an object that’s emitting light.

But what if the cosmos is infinite in size and has existed for an infinite amount of time? Does that resurrect or reinstate the validity or viability of Olber’s Paradox? Not necessarily.

Why is there something rather than nothing? That’s been a prime philosophical question that has raged for eons. But, on reflection, overall, there is a great deal more of nothing than of something. If everything was something, it would be rather difficult to move. There would be no elbow room. In other words, just because the cosmos is infinite in duration and in volume doesn’t mean that there has to be an infinite amount of something within.

Let’s say that pure nothing is a perfect vacuum. Then something within that nothing makes for an imperfect vacuum. One could image a cosmos so dilute that there could literally be gaps of pure nothingness between the bits and pieces of something. Or, one could imagine a universe that contained just one final cosmic Black Hole that had over all the infinite eons gobbled up everything else that had been a something within the cosmos, and thus 99.99999% of that cosmos would contain absolutely nothing. 

That aside…

Stars, like people, are born, and thus their light may not have yet reached us.

Stars, like people, die, and thus their light has ceased to reach us. It has all now passed by.

In an infinite space, stars maybe so far distant that by the time their light reaches us, it’s so diluted or spread out that only one photon per hour hits the eye and that threshold is too low to stimulate the optic nerve and thus register.  

Ever present cosmic Black Holes have gobbled up a lot of the radiation that is emitted and reflected. In fact, in a cosmos that’s infinite, why haven’t those astronomical Black Holes sucked up everything that can be sucked up thus terminating any and all evolving universes within that cosmos? Well the answer is Hawking radiation which theoretically predicts, on pretty substantial grounds, that eventually Black Holes will radiate away their mass. Once input is less than Hawking radiation output, the Black Hole will slowly, ever so slowly, radiate away, giving back to the cosmos what it once took away. There will be more on the significance of that shortly.

Entropy and Cosmic Recycling

Another concept that needs addressing is entropy or the Second Law of Thermodynamics, otherwise known as the ‘arrow of time’ or sometimes as ‘time’s arrow’. If one considers an infinite universe to be a closed box or closed system, then over time, and we have an infinite amount of it, that closed box should reach absolute equilibrium and no further cosmic evolution would be possible. There would be a maximum amount of disorder, and there would be no further energy available to reverse that level of disorder.

It should be noted from the outset that in any closed box or closed system, entropy rules. Things will go from a state of order to a state of disorder without outside interference, that being an external source of energy to reverse the natural trend. The commonly cited example is if you have a closed box (the kitchen), and you turn off the fridge, the kitchen and the fridge will eventually reach absolute equilibrium, the same temperature. The kitchen warms up the fridge; the fridge cools down the kitchen, until both are at the same temperature – maximum disorder. It takes an outside energy source – electricity – to keep the fridge colder than the kitchen and thus in a state is disequilibrium or a state where entropy has not been maximalized. Trouble is, once energy is evenly spread out throughout a closed system (like the fridge in the kitchen), no matter how much of it there is, it’s useless in terms of doing useful things – like initiating change.

Another example: Your own body is a closed system. Your body’s energy is in equilibrium. You are at 98.6 degrees Fahrenheit from head to toe. Within that state of affairs, your body can not do useful things. Fortunately, there’s a larger closed system that your body is a part of (like the fridge is part of the kitchen) that enables you to disrupt your body’s equilibrium and thus provide the means for your body to initiate change. Your outside energy source is food, which is good since once you invoke that larger closed system that contains you, that larger system absorbs your body heat that gets radiated away into it. So the fridge needs outside energy to replenish its supply of cold; you need energy to replenish your body heat and to provide the ways and means to keep you keeping on. Of course as we all know, that’s just postponing the inevitable. Sooner or later the fridge breaks down with wear; ditto you too. But in the meantime, and for a little while, you can keep your body’s entropy under control.  

Now any attempt to tunnel around various laws, principles and relationships of physics might be in vain, but not a total waste of time. The laws, principles and relationships of physics are constantly being refined, even overturned as in Einstein refined Newton’s gravity; the Sun going around the Earth got overturned by Copernicus. However, anyone attempting to tunnel over, around, or through the Second Law of Thermodynamics should abandon all hope. If you try to butt heads with entropy you’ll just end up with a sore head. You’d have better luck patenting a ‘perpetual motion’ machine, itself a violation of the ways and means of the entropy concept. In fact entropy is why you can’t construct a perpetual motion machine and why any patent officer worthy of the name would refuse you a patent for one.

Still, in an infinite cosmos, a cosmos that keeps on keeping on, there probably needs to be a way to go from a state of disorder (high entropy) back to a state of order (low entropy).
  
To be continued…

Tuesday, May 7, 2013

A Lifeless Universe: Part Two

You know and I know that at this point in time, our Universe is inhabited. Even if nowhere else in the cosmos, Planet Earth is host to terrestrial life. However, the Universe didn’t start off with any life, especially human life. This puts the kibosh on a certain brand of quantum philosophy, the brand that encompasses the role of the observer and the role played by probability.

Continued from Part One…

In a universe without life, it’s probably pretty meaningless to talk about concepts like free will. Then there’s that whole sackful of concepts related to good-and-evil like morals, ethics, sin, badness, righteousness, etc. and as such there’s no need for the concepts of heaven or hell. As such, scratch salvation, redemption, forgiveness, or damnation.

There are no emotions, suffering, pain, sorrow, pleasure, consciousness, or psychology. There’s obviously no disease.

There’s another bagful of concepts like the afterlife, reincarnation or resurrection that can go by the boards. Speaking of the latter, there’s no such thing in a lifeless universe as miracles. There is no such concept required like survival of the fittest; there are no wars, no death, and certainly no taxes! There were no soft science concepts around like society, culture, education (no homework), politics and government (no politicians), no economics (no bills), no religion (no thou shalt nots), no philosophy (who needs angels and pins), history (all those names, dates and places) and no environmental issues that needed addressing. There was no beauty (and no ugly either). In short, that pre-life era – that was what is known as the really good old days!

There’s one other important contrast between a lifeless universe and the universe that, in this case specifically contains and singles out humans and human concepts, and that is probability.  

Probability or uncertainty (two sides; same coin) dominates our existence. What odds my next child will be a female? What odds the next time I fly the plane will crash? What odds I win the lottery this week? What’s the probability I will be promoted this year? What’s the probability that I am normal, being of average height, weight, age, etc.? Even in science as performed by humans, probability or uncertainty dominates. Every measurement has error bars. Every forecast has some degree of uncertainty. Even the Sun rising tomorrow is not absolutely guaranteed (though I wouldn’t lose any sleep over that unlikely event). Every theory can ultimately be found to be wrong or incomplete. And just where is that damn electron anyway?

The fundamental question is, is probability an intrinsic property of Mother Nature like mass and gravity, or is it a human invention; a human concept? IMHO, there are no error bars in Mother Nature’s reality. Mother Nature knows the temperature is this, not around this but within this range. Mother Nature notes it will rain tomorrow, not just a chance of showers. Mother Nature knows that the Sun will rise tomorrow even though it will go nova the day after that. Mother Nature knew that Einstein’s theory of gravity was more precise than Newton’s theory of gravity millennia before Newton or Einstein was conceived of in anyone philosophy. And Mother Nature knows exactly where that damn electron is because the electron is. 

Any observer, via instrumentation or via the five senses, usually has to interpret what that observation actually represents – it’s not always obvious. If it was, science would have concluded its work decades ago, or just be engaged in refining things from the tenth to the twelfth decimal place. Interpretation – the choice between two or more possibilities – well that’s weighing probabilities.

* We’ve all observed a cat rubbing its head along an object. What’s the probability the cat is putting its scent on the object or the probability does it have an itch to scratch?

* We might have observed a boat passing away from us and disappearing over the horizon. Is this because the Earth is probably round or did the boat probably sink?

* In quantum physics, observations suggest a wave-particle duality. But is it more probably a wave or is it more likely a particle? 

* Is that unusual light in the sky probably an alien spaceship or is it probably a weather balloon?

* Does viewing a sunrise suggest t you that the Sun probably goes around the Earth or that the Earth probably is rotating around its axis?

* You spot that tornado on the horizon – maybe it will miss you or maybe it won’t. What are the odds? It certainly can’t both hit you and miss you at the same time and place.

* Is Pluto probably a real planet or isn’t it (and does it even cosmically matter)?

* My friend has a cold. I have a cold. Did I probably catch his or did he probably catch mine or was there probably something contagious in the meal we shared several nights ago?

* That Sasquatch I saw. Was it probably too much to drink or was it probably real and if it was real was it probably a bear or was it probably an unknown primate?

* Did the apple fall to earth because it’s probably seeking its natural place or was it probably due to an external force called gravity?

* Is Schrodinger’s cat probably dead or probably alive? It can’t be both simultaneously despite what quantum physics suggest.

* Why is the night sky dark? Is it probably because the Sun’s not shining in the sky at night or probably because the Universe is expanding or probably because there’s only a finite number of stars and galaxies giving off light.

* Why did the chicken cross the road this morning? You may not know (though you can probably come up with a half-dozen possibilities) but the chicken probably does.

There’s little doubt in my mind that to all of these probably observations there is but one answer(s). In many cases we’ve sussed out the answer(s). We don’t have the answer(s) in all the cases. I say answer(s) because there can be more than one answer acting jointly, like there really was a Sasquatch and yes, you were also really, really drunk; yes the Earth is round, but yes, the boat sank as well. But its an either/or certainty of an explanation(s), not a bit of both ways by sometimes probably having your cake and sometimes probably eating it too, probability, as in sometimes the apple falls to earth because it is seeking its natural place and sometimes it falls to earth because of gravity; or that Pluto is a planet on odd days or in months containing an “R” and not a planet on even days or non-“R” months; or sometimes the night sky is dark because the Sun isn’t in the sky, but at other times the night sky is dark because the Universe is expanding and at yet even on other occasions its only dark because there’s only a finite number of stars and galaxies.

The bottom line is that the Universe isn’t governed by probability. Given identical sets of circumstances or conditions, the outcomes remain the same. Observers and observations are irrelevant. That’s made crystal clear during all those millennia the Universe was observer-free.   

Monday, May 6, 2013

A Lifeless Universe: Part One

You know and I know that at this point in time, our Universe is inhabited. Even if nowhere else in the cosmos, Planet Earth is host to terrestrial life, from the humble bacteria through to plants, invertebrates, fish, amphibians, reptiles, birds, and mammals. In terms of sheer numbers of species and total biomass, microbes and insects rule the roost, though humans alone pat themselves on the back. However, the Universe didn’t start off with any life, especially human life. This puts the kibosh on a certain brand of quantum metaphysics, the brand that encompasses the role of the observer and the role played by probability.

I think everyone would agree that before they were thought of in anyone’s philosophy, the Universe existed. You’d agree that the Universe existed before humans existed, unless you’re one of those fundamentalists who interpret the Book of Genesis literally, and even then there were a few days for the Universe to enjoy a pre-human existence. If you’re not one of those extreme right wing all-things-literal Christians, then you’d go along with the Universe existing before life, any kind of life, arose on Terra Firma (or anywhere else in the cosmos for that matter). You’d also have to go along with the notion that the Universe existed before the Earth (and therefore the Sun and solar system) existed, since the parent (the Universe) has to exist before the offspring (Earth, Sun and solar system). In fact, to bring this string to its logical conclusion, the Universe existed even before our home parent galaxy, the Milky Way existed.

The origin of our Universe via that Big Bang event was roughly 13.7 billion years ago. Our own galaxy didn’t come into its own until three plus billion years post Big Bang. Planet Earth (plus Sun and solar system) came about some 4.5 billion years ago; the first stirrings of what we’d call life happened on Earth within a half a billion years of Earth’s origin event. If you want to equate life in the Universe with life on Earth (terrestrial biology is the proverbial IT), then the Universe has been lifeless for the first 9.7 billion years of its existence.

Our Universe is bio-friendly otherwise we wouldn’t be here to discuss the issue. That’s often termed the Weak Anthropic Principle. A bio-friendly Universe is a Goldilocks Universe, albeit a dangerous Goldilocks Universe with lots of places that are too hot or too cold or otherwise not quite right and not quite bio-friendly. But, any port in a storm.

But before life was thought of in anyone’s (not that there was anyone) philosophy, we’re certain that:

* Chemistry still happened.

* Stars still shined and photons still did their photon thing.

* Gravity still grabbed; Black Holes still formed.

* Radioactivity decay still proceeded.

* Neutrinos still whizzed their merry way along the cosmic byways and pathways.

* Electrons still quantum hopped from orbit to orbit giving off and absorbing energy.

* Quarks still carried on their threesome relationships inside protons and neutrons.

Okay, there clearly was a time when the cosmos was lifeless and the above were cosmic truisms. There clearly might come such a time again if Planet Earth is the proverbial IT when it comes to the life part of “life, the Universe and everything”. Humans aren’t immortal; Planet Earth isn’t immortal, and as I said earlier, the Universe can be a dangerous place. Perhaps humans don’t even need assistance from the Universe at large to bring about their extinction and the extinction of all life on Earth. If life on Earth goes kaput, then:

* Hurricanes, tornadoes, thunderstorms, blizzards, floods and droughts will still happen on Terra Firma.

* Volcanic eruptions, earthquakes, avalanches, Ice Ages, tsunamis, meteor impacts, erosion, mountain building, and continental drift will still happen on Terra Firma.

* The tides will still ebb and flow; the Moon still waxes and wanes.

Now the $64,000 question is why is a lifeless Universe of any interest whatsoever? The answer is “observers”, or in the case of a lifeless Universe, “no observers”.

Many, especially the religious, think the Universe had a purpose, and that was to be fruitful and produce life, intelligence and consciousness, a way of the Universe being able to contemplate its own navel. That’s often termed the Strong Anthropic Principle. Most scientists give that the thumbs down on the grounds that the Universe just is. The Universe doesn’t have a consciousness, or a deity controlling it, and therefore the cosmos can’t have a purpose to its existence, nor a ways and means that it can consciously direct itself toward such a goal.

However, many quantum physicists suggest that the Universe cannot have achieved a reality until such time as observers (life) appeared to give the Universe reality. That’s often termed the Copenhagen Interpretation of quantum mechanics. The idea is that all possible realities exist in a state of superposition and only one becomes reality when someone actually observes and forces the numerous possibilities down to one certainty. All possible realities are grouped together and termed the probability wave-function or wave of probability. When crunch-comes-crunch and someone peeks, Mother Nature is forced to make a decision, the wave-function collapses and one and only one certainty results.

Until life appeared then, the Universe was in a superposition of all possible realities, a wave-function that was a composite of all possibilities. That first observer hence collapsed the wave-function of near infinite possibilities down to one reality. Or is that just so much bovine fertilizer?

Now between the time of the creation, that Big Bang event some 13.7 billion years ago, and the time of that first observer arising, the cosmos expanded and evolved. Stars formed, solar systems formed, galaxies formed, and so on. Now all that suggests that there was one reality, one chain of events, and a causality that was universal – the Universe was not in a composite of all possible states of reality even while no life existed. It’s silly to think that that ever first proto-cell billions of years ago determined the single structure or reality of the Universe we see around us today. For observers to have come into being, the Universe had to have already been in a state of being. Therefore, the Copenhagen Interpretation of all things quantum is utter nonsense.

So, does the Universe exist even if nobody is looking? Yes! Did the Universe exist even when there was nobody to look? Yes! Are observers relevant? No!

Having settled the observer question, let’s move on to the next phase.

To be continued…

Thursday, August 23, 2012

Dark Energy: The Ultimate Free Lunch

Science is full of surprising discoveries. One that recently won the Nobel Prize in Physics was the discovery that the Universe is not just expanding, but that expansion rate is accelerating. The cause is a mysterious and unexplained ‘dark energy’ which is ever increasing right along with the accelerating Universe. But if the Universe contains all that is and ever will be, where is this extra ‘dark energy’ coming from and is this creation out of nothing a gross violation of the basic laws and principles of physics? If yes, perhaps there’s an even more surprising alternative.
  
If you toss a ball into the air, there are two basic forces at work acting on the ball (ignoring atmospheric friction or drag of course but one can pretend there’s no atmosphere). There’s the oomph (kinetic) energy you give the ball in the upwards direction; there’s the gravitational force that pulls on the ball in the opposite direction. There are two outcomes. 

If you toss a ball up into the air, you expect just one thing to happen – the ball will go up; the ball will slow down; the ball will stop; the ball will fall back to the ground. Why? Earth‘s gravity, that’s why.

If your name is Hercules and you really toss that ball up into the air, maybe, just maybe, the ball won’t fall back down to the ground. You have given the ball enough oomph energy to overcome, though not avoid, Earth’s gravitational pull. But, even if it doesn’t fall back to ground level, even if it keeps on going up, up and away for all time, it will still be forever slowing down. Why? Earth’s gravity, that’s why.

In both scenarios the oomph you give the ball can never be enough to enable the ball to escape Earth’s gravity entirely. The ball must slow down. That’s because the gravitational pull of the Earth on the ball (and also the ball on the Earth) extends to infinity. At no point does gravity cut out. You can’t escape gravity though your energy oomph can be enough to prevent its domination – the ball doesn’t have to fall back to Earth.

Now, the absolutely one scenario you would never expect, is that if you toss the ball into the air, even if the ball didn’t fall back down to ground level if it was given really lots and lots of oomph, that the ball would somehow not only fail to slow down but would in fact speed up. If you witnessed that you’d suspect that your mind or vision was faulty. The only way the ball could accelerate away from you is if it had some sort of additional, internal energy supply (like a rocket). Since it doesn’t, it can’t.

Now apply that logic to the Universe as a whole. In the beginning the Big Bang (the explosive event of the creation) gave a certain finite amount of oomph to all the bits and pieces that make up the Universe. And thus the Universe is expanding – a standard scenario when you have an explosion. When a bomb explodes, the result is an expansion of bomb-stuff. Now all those bits and pieces have a certain finite amount of gravity. The Universe as a whole therefore has a certain finite amount of gravity.

And so we have a similar contest as per the ball’s oomph and Earth’s gravity. Now, either the combined universal gravity of all those bits and pieces will be enough to overcome the finite amount of oomph provided by the Big Bang, and the Universe, like the ball, will slow down, stop and reverse direction (becoming a contracting Universe) or the oomph will prove greater than all those combined bits and pieces gravity and the Universe will expand forever, though that expansion rate will slow down over time. The expansion rate may never reach zero, but the gravity of the bits and pieces must drag forever and ever on the overall initial oomph. The Universal expansion will slow down, albeit never to zero. Okay, like the ball and the Earth, it’s pretty much one or the other. You, as per the ball and the Earth, wouldn’t expect the expansion rate of the overall Universe to increase. That defies logic, everyday experience and basic physics.

For the Universe to accelerate, it would have to be supplied with extra energy from outside, but the Universe is everything and contains everything, there is no outside, so where can additional energy come from? It can’t, not without violating one of the most basic of all basic fundamental physical principles – you can change one form of energy into another form, but you can’t create energy from nothing. Wouldn’t it be nice to just snap your fingers; wave a magic wand, and presto, your empty gas tank is now full or your cold house is now snug and warm! You don’t get something from nothing! The common phrase is that “there’s no such thing as a free lunch!”

So the fundamental question cosmologists (astronomers who study the Universe as a whole) were interested in finding out was whether the Universe’s expansion rate was slowing down enough to cause the Universe to grind to a halt and then reverse; or not. There was never any question that the expansion rate was slowing down. It was just a question to what order of magnitude and was it enough to ultimately cause a Big Crunch.

And so it came to pass that two competing teams of astronomers embarked on a study to crunch the deceleration rate numbers; answer that question of whether the Universe will eventually cease expanding and undergo a contraction (like that ball falling back down to Earth) or not (like the ball that Hercules tossed). Nobody on either team would have bet a nickel, far less the family farm, that the answer would be none of the above. Somehow or other, the bits and pieces that make up the Universe gave the middle finger to gravity. The unthinkable became thinkable, in fact, it became fact. The Universe’s expansion rate was accelerating; therefore energy must be being created out of nothing to provide that extra gravity-defying oomph; there was such a thing as a free lunch after all! The mysterious and unknown energy source behind this unexpected phenomenon was termed ‘dark energy’.

There’s little to dispute in terms of observational evidence for the existence of ‘dark energy’, or rather the fact that the expansion rate of the Universe is accelerating. Evidence has gone from strength to strength.

This discovery was so great, and so totally unexpected, that the team leaders were awarded the Nobel Prize in Physics (2011) for it. But, it must be pointed out that the recognition was for the discovery, not for the explanation. There is no explanation. You can’t adequately explain a free lunch! You need extra energy oomph to power up the acceleration rate of the Universe just like you need an extra surge of gasoline to accelerate your car. Where does that extra energy come from and keep on keeping on coming on from? Just calling that addition source ‘dark energy’ provides no explanation for the free lunch it is. There is a fundamental problem here.

How so a free lunch? Well if I have my facts right, the way ‘dark energy’ works is this. Dark energy is an intrinsic property of space that exerts a pressure that causes that space to expand, which in turn creates new space which has ‘dark energy’ as an intrinsic property which results in that space expanding thus creating more space and thus more ‘dark energy’ and so on and so on. More space means more ‘dark energy’ which means more space, etc. It’s creation out of nothing, or, it’s a free lunch. Now this notion of an expanding space alone puts me at odds with the establishment of modern cosmology. We part company here since I remain convinced the Universe is expanding through existing space. But that still leaves the acceleration rate to the expanding Universe, even if through existing space, as an anomaly.

From the Oxford Companion to Cosmology (2008) we have this snippet: “The simplest dark energy model is the cosmological constant*, which maintains a fixed density as the Universe expands. … Thus far the cosmological constant has proven capable of explaining all relevant observational data, and thus is the chosen ingredient of the standard cosmological model.”

What’s wrong with this statement? It postulates a free lunch, that’s what.

Let’s drop down a notch in scale and look at something more familiar.

To illustrate, take a pure ice cube which has a density slightly less than the pure fresh water from which it came (which is why ice cubes float in water). Say the ice cube is one inch by one inch by one inch or one cubic inch in volume. Now double the dimensions to two inches by two inches by two inches. The ice cube is now eight cubic inches in volume. The ice cube has expanded in volume -so far so good. The density of the ice cube hasn’t changed, so you have to account for the creation of the extra seven cubic inches of ice. If you can’t account for the additional seven cubic inches then something is amiss. The alternative is that the original ice cube has expanded, but no additional ice has been added, so the density of the ice cube has decreased – same amount of ice but spread over a greater volume. But that’s equally screwy. You can’t change the density of ice and still have ice. Density is a fixed parameter of the substance we call ice.

Now change the ice to water vapour and you can alter the parameters. One cubic inch of water vapour can expand to eight cubic inches of water vapour. If you don’t add extra water vapour then the density of your original cubic inch of water vapour obviously decreases in the expansion. You have less water molecules per unit of volume than you had originally. Now the Universe is like water vapour. The Universe is not one solid lump like our ice cube; rather it’s zillions of bits and pieces (like water molecules) that occupy and spread throughout an ever expanding volume. The same amount of stuff expanded into a greater volume means of necessity less density. Any high school student knows that.

You cannot have the concept of density without also talking about the density of a something (like the cosmological constant). It’s meaningless to talk about the density of nothing. That something could be matter, energy or more likely a mixture of both since it’s hard to conceive of energy-less matter or matter in an energy-less state. In fact it’s physically impossible.

But note the Oxford phrase above: “the cosmological constant, which maintains a fixed density as the Universe expands” - something’s screwy somewhere.

If we can’t accept creation of this mysterious cosmological constant ‘dark energy’ out of nothing, whatever is driving the accelerating expansion of the Universe (call it ‘dark energy’ if you must) must also be getting thinner and thinner on the ground, but that would be like easing your foot off the accelerator pedal of your car. You car would cease to accelerate and ease back to a constant velocity (in Universe terms a steady expansion rate) or a deceleration (which is what our two teams of cosmologists were trying to measure in the first place). So it’s a Catch-22. We can’t have creation out of nothing (a free lunch) – that is just not acceptable - but without it you can’t have an expanding and ever accelerating Universe which has been experimentally observed.

I used to think that ‘dark energy’ must be a variation on the theme of the vacuum energy, but I couldn’t figure out how to get a free lunch out of the vacuum energy. For the perplexed, the vacuum energy just means that even when you seemingly have nothing, a vacuum, you still have some energy present. Translated, you can’t have an absolute state of nothingness which would be a theoretical temperature of absolute zero. At the micro or quantum scale, since energy and mass are equivalent (Einstein’s famous equation), energy can be converted to mass  – usually a pair of matter-antimatter particles, which annihilate each other quick-smart returning the energy back to the environment that created them in the first place. Mass can be converted to energy. There’s no free lunch. Conservation laws and principles rule the vacuum energy roost.

Has the Universe always been expanding at an ever accelerating rate? No. There are two competing forces at work. Gravity, a pull force, and this ‘dark energy’, a kind of antigravity or push force. Over time, so the story goes, the amount of ‘dark energy’ increases as space expands. But gravity doesn’t increase. The amount of gravity the Universe has now is the amount the Universe had way back when. At the start gravity was king of the hill because there wasn’t that much space, therefore that much ‘dark energy’. However, with every passing second the amount of ‘dark energy’ increased until it finally overran gravity which was standing still or constant. At that point of intersection the acceleration began in earnest. Apparently that was some five or so billion years ago. Prior to that, the Universe was expanding but at a decelerating rate.

There are two related offshoots to this ‘dark energy’ puzzlement. One is the Big Bang itself. Now the standard cosmological model has it that the Big Bang took place in a small space; a very, very, very small space. In fact the space available was something atomic sized. You couldn’t even see our Universe with the unaided eye a micro-second prior to the Big Bang Ka-Boom it was that tiny, yet anything and everything that exists today, existed then in that tiny volume. Now the problem is that when you try to figure out the state of play with the mass of the Universe (gravity) crushed down to the size of an atom, (the realm of the quantum), the equations break down. You have no idea what the state of play was. In a broader context, the physics of gravity (general relativity) cannot be reconciled with the physics of the quantum. Thousand have tried over many decades. They were just banging their heads against a brick wall. To this day, nobody can fit the hand of gravity into the glove of quantum physics. The way I like to put it is that you apparently have two different and incompatible sets of physics software running the cosmos. That’s nuts! That too needs an explanation.

The other – well there’s an awful lot of Universe for just little old us, and an awful lot more was created (that accelerating Universe) in the time it took you to read that. It’s like having a flea housed in Buckingham Palace that’s adding additional rooms on at a rapid rate of knots. For the flea, it’s a lot of wasted space. There’s an awful lot of just about empty space between the planets; between the stars; between the galaxies; between clusters of galaxies, etc. Why do we, and any other extraterrestrial life forms that may exist, need with so much empty space and pretty much worthless real estate, nearly all of which we can’t even reach? That’s nuts. That needs an explanation, like maybe most of the Universe is just visual holographic wallpaper and has no more reality than the images on your bedroom wallpaper. Is the Universe in fact just a simulation; a virtual reality?   

The way to befuddle an artificially (simulated) intelligent ‘life’ form is to give it an unsolvable problem like dividing a number by zero; calculating the square root of a negative number; coming up with the definitive final value of Pi; or solving an unsolvable paradox like something that both is and is not at the same time; how many angels can dance on the head of a pin; or create a spherical cube. The possibilities are numerous and it’s been used many a time in sci-fi plots to demonstrate the superiority of wetware (brains) over software (silicon chips).

But what if we weren’t wetware (any more than the characters in your dreams are), but in reality software – say a simulated being – an artificial intelligence being given unsolvable puzzles to solve like quantum gravity; why is there so much Universe; why are all electrons identical; why ghosts; and how come crop circles; how can dragons and griffins be real creatures without any fossil remains; and how can a viable breeding herd of lake ‘monsters’ exist in Loch Ness for so long without absolute verification, along with other anomalies that make no apparent sense, like why the expansion rate of the Universe is accelerating.

Conclusion: There’s no disputing the observations that the expansion rate of the Universe is accelerating. While that appears to be wildly improbable, a violation of natural law, that is creation from nothing – a free lunch in other words – it’s not difficult to do as a simulation. So, do we live in a simulated Universe as virtual beings?

*The cosmological constant was a concept invented by Einstein. He knew that the Universe should be contracting under its mutual gravity yet he and nearly everyone else knew (or assumed) that the Universe was static. So he needed a constant outward pressure (the cosmological constant) to balance gravity just-so to enable the Universe to be static – unchanging. So, when Einstein learned, along with the rest of the world later on down the track that the Universe wasn’t static but expanding, he called his ad hoc cosmological constant mechanism the greatest blunder of his career in science. However, the concept, though dormant post-Einstein, has never been too far from the minds of those who could resurrect it in a flash if it served their purpose, like explaining the accelerating expansion rate.