A Jewel at the Heart of Quantum Physics
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A Jewel at the Heart of Quantum Physics
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Re: A Jewel at the Heart of Quantum Physics
#2“You can easily do, on paper, computations that were infeasible even with a computer before.”
That doesn't happen very often! Or this:
[T]he new geometric approach to particle interactions removes locality and unitarity from its starting assumptions. The amplituhedron is not built out of space-time and probabilities; these properties merely arise as consequences of the jewel’s geometry. The usual picture of space and time, and particles moving around in them, is a construct.
That is exactly the kind of thing that happens when one model is replaced with a deeper one.
Re: A Jewel at the Heart of Quantum Physics
#3Re: A Jewel at the Heart of Quantum Physics
#4Re: A Jewel at the Heart of Quantum Physics
#5Re: A Jewel at the Heart of Quantum Physics
#6As a Layman, the concept seems reminiscent of Garrett Lisi's E8 idea. Are they comparable approaches?
Re: A Jewel at the Heart of Quantum Physics
#7Is anyone here familiar with this work? I would like to hear more about it. At a minimum, this article is very much better than the usual science blog filler—it contains signs of a genuine conceptual breakthrough. For example: “You can easily do, on paper, computations that were infeasible even with a computer before.” That doesn't happen very often! Or this: [T]he new geometric approach to particle interactions remo…
Now, there's some newish kinda diagram that's gone into use (I think maybe only for N=4 SYM?), which is also used to calculate interaction cross-sections. However, they're written in such a way that they always describe on-shell processes, hence why they're called on-shell diagrams. I think Zvi Bern had something to do with this. These diagrams have an underlying structure... and mathematicians have started writing similar diagrams recently (as in, they ran into a similar structure recently), but instead of the diagrams being to describe interactions, they're used to describe some structure called a positive grassmanian. The positive grassmanian in low dimensions relates to convex polygons... it's a simple thing. This guy had this interesting insight that an interaction crossection corresponds to some sort of volume... and in this case, it corresponds to the volume of this polytope described by the positive grassmanian... or something like that.
The positive grassmanian says nothing at all about unitarity or positivity, nothing about space or time, but it lets you calculate shit. That's very, very cool.
Re: A Jewel at the Heart of Quantum Physics
#8Every once in a while I get the feeling that the greatest discoveries are still ahead and these next few decades might be the real "golden age of science". The "individual genius" phase is just behind us and the "collaborative brilliance" phase is just beginning.
Re: A Jewel at the Heart of Quantum Physics
#9Is anyone here familiar with this work? I would like to hear more about it. At a minimum, this article is very much better than the usual science blog filler—it contains signs of a genuine conceptual breakthrough. For example: “You can easily do, on paper, computations that were infeasible even with a computer before.” That doesn't happen very often! Or this: [T]he new geometric approach to particle interactions remo…
Arkani-Hamed had some compelling things to say recently at a talk and colloquium at our university; looking forward to learning more.
Re: A Jewel at the Heart of Quantum Physics
#10http://susy2013.ictp.it/video/05_Friday/2013_08_30_Arkani-Ha...