The Deconstructed Standard Model Equation
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The Deconstructed Standard Model Equation
1–10 of 58 posts
Re: The Deconstructed Standard Model Equation
#2Seriously though, very neat to see the actual equation used to model the universe.
Re: The Deconstructed Standard Model Equation
#3Still, despite all this complexity, we still have several minor and major theoretical gaps to fill. Exciting times!
Re: The Deconstructed Standard Model Equation
#4Well, when you put it like that... suddenly it all makes sense :p Seriously though, very neat to see the actual equation used to model the universe.
Re: The Deconstructed Standard Model Equation
#5I've been banging my head on QFT and the Standard Model for enough time now that I can actually glimpse more or less what those terms actualy mean , as in , I can translate them into words. It's almost like learning a new language! Pretty awesome. Still, despite all this complexity, we still have several minor and major theoretical gaps to fill. Exciting times!
Re: The Deconstructed Standard Model Equation
#6I've been banging my head on QFT and the Standard Model for enough time now that I can actually glimpse more or less what those terms actualy mean , as in , I can translate them into words. It's almost like learning a new language! Pretty awesome. Still, despite all this complexity, we still have several minor and major theoretical gaps to fill. Exciting times!
I, as a layman with basic college physics knowledge, and passing knowledge of the standard model, want to understand the meaning of those terms. Do you know how I can go about that? Ideally, with something a little less dense than a textbook.
Unfortunately, there is no real shortcut to being able to understand those terms except by studying one of the standard texts. And, physics being what it is, you can expect a pretty hard slog because the texts will assume you know first quantization back and forth. Add to that, it's not just QFT but the domain-specific standard model knowledge.
Dealing with QM requires PDEs, linear algebra, a fair bit of applied analysis (real and complex). Dealing with QFT requires that, plus learning a bunch of new techniques with the typical hand-wavy rigor of physics. (Hand-wavy compared to math.)
If you want to get a feel of the Standard Model without knowing QFT, the text I used when I took senior-level particle physics is great: Introduction to Elementa Particles, by David Griffiths. (He's an excellent writer, btw; I recommend any of his physics books).
As for the standard texts for particle physics, I'm afraid I've been out of the loop for too long to remember what books were used.
Re: The Deconstructed Standard Model Equation
#7If you want the TeX source for your own purposes, it's here: http://nuclear.ucdavis.edu/~tgutierr/files/stmL1.html
Re: The Deconstructed Standard Model Equation
#8Earlier quoted context omitted.
I, as a layman with basic college physics knowledge, and passing knowledge of the standard model, want to understand the meaning of those terms. Do you know how I can go about that? Ideally, with something a little less dense than a textbook.
I have a PhD in physics, though not particle physics. QFT was required, since the methods appear all over in condensed matter physics. Unfortunately, there is no real shortcut to being able to understand those terms except by studying one of the standard texts. And, physics being what it is, you can expect a pretty hard slog because the texts will assume you know first quantization back and forth. Add to that, it's n…
(For others, QED is the part of the standard model about electrons and light -- the most relevant part for everyday physics and apparently the simplest part too.)
Re: The Deconstructed Standard Model Equation
#9Re: The Deconstructed Standard Model Equation
#10I've been banging my head on QFT and the Standard Model for enough time now that I can actually glimpse more or less what those terms actualy mean , as in , I can translate them into words. It's almost like learning a new language! Pretty awesome. Still, despite all this complexity, we still have several minor and major theoretical gaps to fill. Exciting times!
I, as a layman with basic college physics knowledge, and passing knowledge of the standard model, want to understand the meaning of those terms. Do you know how I can go about that? Ideally, with something a little less dense than a textbook.