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Questions tagged [physics]

For questions about mathematical problems arising from physics, the natural science studying general properties of matter, radiation and energy.

12 questions from the last 365 days
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2 votes
0 answers
74 views

Approximate solutions to $x''(t)=-cx + f(t)x$

I recently studied a problem which involved two particles joined by a harmonic spring moving in a potential and through some manipulation, I obtained the equation $x''(t) = -\omega^2x + f(t)x$, where $...
FusRoDah's user avatar
  • 3,738
6 votes
0 answers
371 views

What is the predictive power of each object in QFT, and how are they related? [closed]

My background is not in physics or mathematical physics, so this question is mostly out of ignorance, and probably easily known to experts. Basic Setup You begin with a spacetime $M$. (Minkowski in ...
Tim Phalange's user avatar
1 vote
0 answers
65 views

Some details about relationship between central charges and second cohomology group of the Lie algebra

S. Weinberg in his book "The quantum theory of fields" talks about central charge that appear in Lie algebra of a given Lie group. To be more precise, on page 83 in the book, he computes the ...
Mahtab's user avatar
  • 287
1 vote
0 answers
204 views

Are causally isomorphic spacetimes Wick-related?

Take the time-orientable spacetimes $(M_1,g_1)$ and $(M_2,g_2)$ that are locally(to be clarified below) Wick-related and both are globally Wick-rotatable(to be clarified below) to the same Riemannian ...
Bastam Tajik's user avatar
1 vote
0 answers
228 views

Is the topological dimension of spacetime fixed for causally isomorphic spacetimes?

Suppose time-oriented spacetimes $(M_1 , g_1)$ and $(M_2, g_2)$ are not homeomorphic under their manifold topologies $\mathcal{M}_1$ and $\mathcal{M}_2$ respectively. The Lorentzian metrics $g_1$ and $...
Bastam Tajik's user avatar
1 vote
0 answers
170 views

Order isomorphism + manifold homeomorphism => path topology homeomorphism?

Suppose time-oriented spacetimes $(M_1 , g_1)$ and $(M_2, g_2)$ are homeomorphic under their manifold topologies $\mathcal{M}_1$ and $\mathcal{M}_2$ respectively. Let's call this map $\phi: (M_1, \...
Bastam Tajik's user avatar
1 vote
1 answer
361 views

Can the Causal Structure recover the manifold topology for non-chronological spacetimes?

Given a time-oriented spacetime $(M,g)$, a binary relation $\ll$ can be defined on this spacetime where $p \ll q$ for $p, q \in M$ if and only if there exists a time-like path connecting $p$ and $q$. ...
Bastam Tajik's user avatar
11 votes
2 answers
2k views

Why/does 'low-dimension' topology end with dimension 4? [duplicate]

Put another way, assuming it is somewhat fair to say that we (not I, but those who know better--part of my question is whether my stated assumption is in fact warranted) have in some sense a ...
Troubled Shallows's user avatar
0 votes
0 answers
100 views

I'm looking for the NLab page on particle species

This is just a reference request. I came across an NLab page on particle species described as certain vector bundles. But I can't seem to find it again when I searched recently. If someone can point ...
Mozibur Ullah's user avatar
14 votes
1 answer
1k views

Hilbert's sixth problem and QFT description

The Wikipedia entry on Hilbert's sixth problem about QFT description is “Since the 1960s, following the work of Arthur Wightman and Rudolf Haag, modern quantum field theory can also be considered ...
XL _At_Here_There's user avatar
32 votes
8 answers
4k views

Motivation and physical interpretation of the Laplace transform

Concerning the one-sided Laplace transform, $$\mathcal{L}\{f\}(s) = \int_0^\infty f(t)e^{-st} dt$$ what is a motivation to come up with that formula? I am particularly interested in "physical&...
AlpinistKitten's user avatar
-2 votes
1 answer
141 views

Interpretation and validity of modified Heisenberg uncertainty principle in a metric context? [closed]

Considering the Heisenberg uncertainty principle, which states $\Delta x \cdot \Delta p \geq h$, I've explored a modified version by computing $(\Delta x + 1)(\Delta p + 1) \geq \Delta x \cdot \Delta ...
mathoverflowUser's user avatar