If there are truly separate "universes", then by definition wouldn't it be the case that there would be no way to test (or falsify) whether they exist or not, so would the question of their existence not be in the realm of philosophy and metaphysics rather than the sciences? What am I missing (I assume it has to do with my understanding of the word "universe")?
In this case, from the article, it sounds like there is only a very weak interaction. In fact, since it is only "evidence" left behind in background radiation, it is possible that there is no ongoing interaction, but rather some remaining artifact from when the universes did interact.
Other constants would actually lead to a different universe.
Now, if we strech our imagination, let's have an "space" (meta universe ) where universes are just regions where this contants are active, and there is a slow transision from one "unverse" region to the other. Much like arctic reagion vs. tropical. However, this transision is unlike anything, could be a spacetime/quantum level/?? transition. At this moment, this transition is not measurable.
Can you please explain this? How is sub-atomic nonsensical? It just means "constituent particles of an atom."
But that's just the point, instead of using a new word for atoms when sub particles were discovered, the existing meaning was set aside.
This reminds me of how the prefixes we use in computing hardware aren't right either. Your PC might have 8 gigabytes of RAM, but it doesn't literally have 8,000 megabytes or 8 billion bytes, and the same problem with mega- and kilo- too. Somehow we manage and when we're talking gigawatts giga means 10^9, and when we're talking gigabytes in computing we know it has a special meaning, 2^30.
Same prefix, two different usages depending on context. The only thing I can promise you though is we're never going to adopt gibi, mebi and kibi, at least not in my lifetime anyway.
Understanding the history and evolution can be interesting or informative as to why things are the way they are. So yeah, one upon a time "sub-atomic" would make no sense, it makes sense not of course. We're familiar and used to the idea. Wasn't always the case though.
atoms are made of protons neutrons and electrons each which is made of 3 quantoms.
The analogy is quite apt, really, just switching out bigness in place of smallness.
Electrons are currently thought to be indivisible, and protons and neutrons are made of three quarks each.
I've never heard of the word "quantom" before... where does it come from?
This literally contradicts what the first paragraph of the article. It says that this paper "lays the theoretical groundwork for discovering a parallel universe". If you've discovered it, you've tested and proved that it exists.
Furthermore, the article states that it's a "mathematical paper which seeks proof of the 'multiverse' theory". Assume for a second that there is mathematical proof of the multiverse theory. In order to disprove this, you now need to disprove the math.
You need data from experiments to falsify the wrong ones. And I think that's why the article means - paper shows what experiment needs to be done to falsify some theories that assume multiverse.
In math it's relatively true, because you can only prove theorems given a set of axioms and other assumptions you take as true.
At this point it's all theoretical based on our best mathematical modeling of the universe/physics.
> If there are truly separate "universes", then by definition wouldn't it be the case that there would be no way to test (or falsify) whether they exist or not
By definition? No. Extremely difficult and maybe impossible. Yes.
Keep in mind that before powerful telescopes, the outer planets were "guessed" at by mathematical modeling. Astronomers mathematical calculations led them to believe that there should be planetary bodies like uranus and neptune out there. It took further advances in technology/physics to corroborate the mathematical calculations/model.
The same thing for hereditary genetics and the proton/electron/etc. When the first theoretical/mathematical models were first made, we had no conceivable way of "seeing" a proton or DNA.
Well, if the multiple universes theory provides falsifiable predictions about this universe and is the simplest explanatory model we have for this universe and said predictions / behavior, then the explanation would not be metaphysical at all. For example, if a multiple universe theory was a requisite basis to a universal theory of gravity and quantum mechanics then it would be perfectly within the realm of the physical sciences.
The other extreme end, where there is significant interaction between parallel universes isn’t popular, either, because we would have noticed such universes if that were the case.
So, instead, theoretical physicists that think parallel universes may make sense look for mathematical models that either only have tiny interactions between those ‘separate’ universes or at least only have tiny interactions in the neighborhood (in time and space) where we live (the latter might even be a win; a theory that explains dark energy, dark matter or the Big Bang as detectable effects of paralllel universes would be a winner)
In the end, however, it all boils down to educated guessing, with good theoretical physicists being better (or luckier; the difference can be hard to spot if you need only one or two bright ideas/lucky guesses to build a career) at guessing and at building mathematical structures with some desired set of properties.
When we're talking about "parallel universes", of course the word "universe" no longer means the sum of everything that exists. It has to be redefined as a suitable subset of existence, perhaps similar to the way we've learned to distinguish the "observable universe" with the universe proper. How we ought to redefine it will depend on what we find out (or not) about parallel universes (or lack thereof) in the coming decades and centuries.
Are you saying "separate universes" would be part of the same "universe" if they could be interacted with (so interaction forms the "universe boundary")?
Sometimes words "truly" and "by definition" don't play nicely together, if the established definition happens to be built on mistaken assumptions.
The "atoms" were named like that because they were thought to be elementary and indivisible. Later we learned better, but the name stuck; it would be confusing to try to change it now.
Similarly, the "universe" was believed to be all there is. Maybe it is not. But we already have a thing which has this name, and it would be confusing to rename it, just because we found later that some other things exist too.
The current definition, intuitively, is something like: If you can hypothetically fly there using a rocket (ignoring the light speed limit), it is a part of the universe. If there is no way to get there (even hypothetically ignoring the light speed limit), then it is not a part of the universe... and it is probably wrong to even say that it exists, because how could you know that?
But this is based on an assumption that you can either travel somewhere (ignoring the light speed limit) or there is absolutely no way you could interact with it. And maybe that assumption is true. But maybe it is not... and in such case the reasoning above would fall apart. If there are, uhm, places you could interact with in certain ways, but not in other ways, would they "by definition" be in our universe or not? Well, the definition does not speak about such cases either way, because they were not assumed to exist.
How could you possibly "interact with a place in certain ways, but not in other ways"? I can imagine a few ways, and the nature may still surprise us by doing something unexpected.
Imagine that there are different "regions" such that certain kinds of particles can travel from one to another, but other kinds of particles can't. So for example, we could send there light, and with a bit of luck have some of that light reflected back, but we couldn't travel there. And if in certain direction does not happen to be anything that would reflect the light back from that specific direction, there is nothing we could do about it.
Or imagine that different "regions" interact for certain amount of time, and then stop interacting. So while the parallel universe is connected, we can scientifically prove it, but after it disconnect, we cannot prove the existence of this specific parallel universe anymore. Or maybe the disconnection does not depend on time, but on the number of particles exchanged, so by the mere act of experimentally proving the existence of the parallel universe we are also pushing it away, irrevocably.
I haven't read Hawking's paper, so I don't know if his idea is similar to any of this. It could be something completely different.