Hoping to crack the 40 year long puzzle, physicist Stephen Hawking’s (photo, left) latest theory is certainly interesting: that information does not merely ‘pass through’ the black hole, it’s also stored along what’s known as the “event horizon” of the black hole boundary, in a “super translation.”
What would happen if you fell into a black hole?
This question is not only entertaining (you might turn into spaghetti, according to some theories), but it’s also important to theoretical physicists. Unfortunately, they’re not even sure what happens when a single particle falls in, and it’s been a big problem in physics for 40 years.
Quantum theory — the laws that govern how tiny particles work—says that anything that falls into a black hole is lost forever. But Einstein’s general relativity says that’s impossible: the total amount of stuff in the universe has to remain constant.
(Image Source: Wikicommons)
Over the years, scientists have come up with a variety of theories that try to resolve this paradox. Yesterday, at a conference in Sweden, famed physicist Stephen Hawking threw his hat into the ring.
Hawking suggests that when information falls into a black hole, it might get translated into a 2D hologram on the surface of the event horizon, the sort of membrane that surrounds the black hole. Those copies could “contain all the information that would otherwise be lost,” says Hawking.
As for the stuff that actually makes it in, he speculates that if the black hole is large and rotating, the stuff might wind up in another universe.
But these ideas have actually been around for a while. Hawking’s announcements dive deeper than that. To help explain what all the hubbub’s about, Popular Science talked to Grant Remmen, a theoretical physics graduate student at Caltech.
‘Getting Under The Hood’
Nothing can escape a black hole, right? Wrong! Years ago, Hawking demonstrated that, actually, heat can escape. The stuff that black holes spit out is called “Hawking radiation” in his honor.
Hawking radiation plays a key role in most of the theories that attempt to solve the riddle of what happens to information that falls into a black hole. Because if Hawking radiation is just heat, that means the information really does disappear forever, and the laws that we think govern the universe have a big gaping hole in them.
However, if Hawking radiation also contains some other tiny bits of information, it could be enough to resolve the paradox…
Continue this article at Popular Science
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