Giant Sheets Of Dark Matter Detected
Wandering Wombat writes "The largest structures in the universe have been, if not directly found, then at least detected and pounced upon by scientists. 'The most colossal structures in the universe have been detected by astronomers who tuned into how the structures subtly bend galactic light. The newfound filaments and sheets of dark matter form gigantic features stretching across more than 270 million light-years of space — three times larger than any other known structure and 2,000 times the size of our own galaxy. Because the dark matter, by definition, is invisible to telescopes, the only way to detect it on such grand scales is by surveying huge numbers of distant galaxies and working out how their images, as seen from telescopes, are being weakly tweaked and distorted by any dark matter structures in intervening space.' By figuring how to spot the gigantic masses of dark matter, hopefully we can get a better understanding of it and find smaller and smaller structures."
Interesting or noninteresting to -whom- exactly?
It's really probably just a point of view issue. After all, should there be 'dark matter organisms' of some kind, they'd be most likely supremely uninterested in the likes of us for anything other than curiosity value. However, we're rather interesting to us, being as we -are- us and we tend to be somewhat self-interested.
In Xanadu did Kubla Khan
A stately pleasure dome decree
So we are to understand that dark matter, acted on only by gravity, forms sheets and filaments? We know very well what shapes distributions of particles form over time with only gravity acting on them and they look a lot like galaxies and very little like sheets and filaments. Can anyone clear this up for me?
It's a good philosophical question though. When is a collection of things (say atoms, bricks and mortar, etc.) a thing and when is it just lots of things? Deep down atoms don't come anywhere near touching each other to make molecules and larger structures. I myself am just a collection of tiny dots floating in space a long way from each other.
You are throwing up your hands WAY too soon and crying occam's razor.
Atmospheric distortions are not consistent over time or different locations and those distortions do not "lense" like gravity does. Also standard astronomic technique is to have someone confirm your results with a different telescope, in a different part of the world.
It may not be dark matter, but it's not a smudge on their mirror either.
Could be just a bunch of black holes. Size to mass ration is pretty small, so you could easily miss them.
Another way to look at it: Every time a physicist describes a new effect with a formula, he has in fact given you a (mathematical) simulation of this effect. But that does not mean that this effect is a result from a simulation in the first place. And just because it is possible to think of a computational implementation that might behave similarly to an observed effect (which is a crude way of describing it mathematically if you can't do the maths) doesn't mean it is the result of a computational implementation in the first place. Assuming the Universe is a simulation does not add any insights, so why bother?
Also kinda reminded me of that old joke... An engineer thinks his equations are an approximation of reality but a Physiscist thinks reality is an approximation of his equations (meanwhile, the mathematician doesn't care....).
> "Aw, shucks... you guessed it! Now I have to stop the simulation and start over."
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