Showing posts with label Entropy. Show all posts
Showing posts with label Entropy. Show all posts

Sunday, November 10, 2013

Before The Big Bang

Once upon a time, or was it in the beginning, there was a Big Bang and thus was born what we now call our expanding Universe – expanding because really Big Bangs are associated with explosive events and explosive events hurl out stuff hither and yon. But while there’s little dispute about the Big Bang event, the central question is, was it an ‘in the beginning’ event, or more akin to a ‘once upon a time’ event? If the latter, then it’s reasonable to suggest there was a prior existence to that ‘once upon a time’ event. 

I’ve gone on and on about how there must have been a ‘before-the-Big-Bang’, that the Big Bang event 13.7 billion years ago wasn’t the first cause. That’s because no effect (in this case that Big Bang event) can be the cause of itself. Cause is external to, separate and apart, and prior to the effect. Now it’s time to explore some actual before-the-Big-Bang scenarios even though there are still, even the majority, of cosmologists who suggest that speaking of a before-the-Big-Bang is akin to speaking of what’s further down from the centre of the Earth, or what’s north of the North Pole. 

Astronomers can’t see deeper into the history of our Universe than roughly 380,000 years after the Big Bang event. Until then, the entire Universe was still too opaque. It’s like the Sun being too opaque such that we can’t see beneath the visible surface all the way down to the core. So it’s obvious that if astronomers can’t see post the Big Bang to the tune of some 380,000 years on, they can’t see before-the-Big-Bang. However, I’m quite certain there was a before-the-Big-Bang and that our Big Bang event was just one local cosmic pop in a cosmic ocean of bursting Champaign bubbles.

To understand the Big Bang event one needs to understand (as best as one can) what transpired just before the Big Bang event. And for reasons already outlined, what happened before exists in the realm of scientific speculation.

First cab off the rank, here’s a brief explanation why there has to be a before-the-Big-Bang. The Big Bang event did not, could not, create time. Although astronomers suggest just that, when it comes to actually giving the recipe for cooking up a batch of time, our astronomical chefs’ duck back into the pantry. So, IMHO, time already existed at the moment that the Big Bang went ‘bang’. The Big Bang could only happen in time if time already existed, which means that time existed prior to the Big Bang in order for the Big Bang to ‘bang’ in or at the time it ‘banged’.

As an aside, if our Big Bang wasn’t a first cause, then one is hard pressed to say there ever was a first cause for reasons exactly similar to why our Big Bang wasn’t the first cause. There always was a ‘before’ for whatever first cause you wish to postulate, therefore your first cause wasn’t a first cause at all. The regression extends back infinitely. If the cosmos extends back infinitely, it stands equally to reason that the expanding cosmos will extend for all future infinity – for all eternity. As a theological aside, that eliminates the need for a creator god. It’s been said before, but it bears repeating that if you have a timeless, existing for all eternity, creator God who created the Universe, why not eliminate the middleman (God) and postulate a timeless, existing for all eternity, Universe? By the way, a similar argument can be made for space. Anyway, back to the before-the-Big-Bang. 

One aspect that’s important from the get-go is that one needs to avoid the trap into thinking that the before-the-Big-Bang to Big Bang transition resulted in something quantum sized, like a singularity, at that point of inside-out transition. There just is no way IMHO one can take the contents of our entire Universe and squeeze that down into a size that would make a pinhead look massive in comparison. In addition, the laws of physics break down at such a scale since there is no adequate theory of quantum gravity. You’d require such a theory since 1) you’re postulating a quantum sized object, and 2) because the entire Universe makes for a lot of gravity, that’s a lot of gravity in an extremely tiny space. Since it can’t be done (and thousands have tried to merge quantum physics with general relativity (gravity), it’s best to bypass that can of worms entirely, if possible. 

When you think of bangs today, big or otherwise, it’s usually by something that’s been sitting around for a spell just waiting for a triggering device like an about to be blown tire; about to be popped balloon; about to be exploded stick of dynamite, nuclear bomb, or supernova, etc. So, maybe our before-the-Big-Bang was akin to a giant firecracker just waiting for some before-the-Big-Bang happening to light the fuse. The one scenario that fits that bill is the Ekpyrotic Universe which basically states that there exists a minimum of two 3-D universes each existing in a higher dimensional space. That means the two universes don’t actually see each other since photons can’t pass through that higher dimension. However, gravity can pass through the higher dimension so the two universes can feel each other Thus, these two universes mutually attract under gravity, collide (our Big Bang and equally their Big Bang), and bounce apart – rebound. That process repeats at vastly lengthy intervals as gravity draws them together, again, and again and again (more Big Bangs) and then each rebounds, again and again and again.  

The closest celestial firecracker we have is a supernova. Unfortunately, even the mother of all supernovas isn’t quite in the same league as the Big Bang event. It’s like pitting the Little Leagues against the Big Leagues.

A more theoretical firecracker might be the mother of all Black Holes which at some point reaches and exceeds bursting point vomiting out in reverse order its contents. That theoretical object is a White Hole, like perhaps a quasar (quasi-stellar object). Quasars spew out lots and lots and lots of stuff and energy all from a stellar-sized object. But that scenario too falls short of the amount of stuff comprising our Universe. It seems only the stuff of another universe could account for the amount of stuff that was ‘created’ to make our Universe. The one fly in the ointment here is that a singularity might lay at the heart and soul and centre of any proposed Black Hole and I wish to avoid that can of worms as noted above.  

The other kind of ‘bang’ expansion is say, using as an analogy, traffic approaching and merging at a four-way intersection. That’s the contraction bit. After the traffic lights change, the traffic is free to go on its way. That’s the expansion bit. There’s no real ‘bang’ per say. In other words, the Big Bang was the transition of space turning itself inside-out as it were. Either you had the collapse of a previous universe that went through that four-way intersection, or something akin, like a Black Hole that’s vomited up its contents in the form of a White Hole, sort of like post Xmas sale shoppers rushing the external department store doors and then being ‘vomited’ out the inside of those department store doors and expanding into and throughout the store.

The more logical of the two scenarios is the latter. That’s because we know that any universe is inherently unstable. You just can’t have a perfectly still and static universe if for no other reason than gravity will pull all the flotsam and jetsam together, or in other words, a contracting universe is viable and likely.

The fly in that ointment is that the alternative, an ever expanding universe is also viable and likely if the oomph force that caused the initial expansion is stronger than gravity’s grabbing force.  

We can garner some insight as to whether the immediately pre-Big Bang era was hot or cold. If the Big Bang was an in-place explosion, well most explosions involve giving off heat, be it sodium placed in water (ka-boom), a firecracker (ka-boom), an atomic bomb (ka-boom) or a supernovae (ka-boom), these all appear to be exothermic reactions – they give off heat. However, an explosion in waiting is a much cooler state of affairs. While holding a firecracker in your hand won’t burn your hand, the same cannot be said if it goes bang while you’re holding it. So the pre-Big Bang era wasn’t exactly hot stuff.

If the Big Bang was the result of a previous universe contracting, like cars approaching an intersection from all four directions, well the very act of compression heats things up. So, the Big Bang was a hot (time in the old town tonight) event, and therefore just before the Big Bang was also pretty heated.

Well, maybe we can’t garner any insight after all since the era just before the Big Bang may have been hot or cold. But the Big Bang itself was a high temperature event no matter which way you slice and dice things which is good since that’s what you’d expect from the observational evidence.

What about entropy? Our Big Bang Universe started off in a state of high temperature, a state of high order, or in other words low entropy and has been going downhill (cooling off) ever since. That is, the Universe is becoming more disordered as it heads towards an inevitable heat death. A head death means that the entire Universe is now at the same temperature and no further cosmic evolution or change can happen. But if our Universe started off in a state of high order, then the pre-Big Bang phase must have been in a state of high order too. Well, high order would have been the order of the day in either of the two pre-Big Bang scenarios.    


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…