The Search for Neutrons That Leak into Our World from Other Universes
medium.com
medium.com
Which actually brings up the dark matter/energy - can't it be just the stuff leaking (or being "dumped/exported") from a nearby brane?
-why gravity's relatively weak (distributed) compared to the other three forces, as well as
-dark matter that we have an otherwise hard time observing apart from gravity
The most pernicious source for experiments like this are "fireball neutrons" that are generated from a high-energy muon producing an event that blows up a nucleus in the surrounding rock (via an intermediate pion shower IIRC). This gives you a source of neutrons with energies well up into the 100's of MeV, which will merrily pass through metres of shielding, and a few of them are bound to thermalize in the detector, although most will pass right through.
They've obviously run the numbers on all this (these are very well-known problems for detector design) and decided they can discriminate against backgrounds of this type sufficiently well to make the experiment worthwhile, which all else being equal it certainly is: the possibility of putting brane-world theories to the test is simply too delightful to pass up.
Also, this: "So any change in this gravitational field should influence the rate at which the neutrons leak in and out of our brane."
How can this happen in a unverse that obeys both the relativisc principle and the gravity acceleration equivalence? Will different observers see a different number of particles written at the detector display?
I don't really fancy their usage of "universe" though, since it's normally defined to be all that exists.
The context of this article makes it pretty clear that a brane-constrained definition is being used.
[1] http://en.wikipedia.org/wiki/Multiverse#Max_Tegmark.27s_four...
"universe" may be as shortsighted as our ancestors calling our favorite space-faring rock "uniearth". Such a sibylline definition falls on its head as soon as one tries to define "existence" and finds it ultimately bound to lowly concepts of space or time. What to say of a "uni"-verse that is a constant collapse of probabilistic functions, where every possible permutation simultaneously exists until observed? Let's be humble, and cut some slack at putting words on what we're looking at, because we're really not quite so sure.