Dispersion relations alone cannot guarantee causality

Fuente: arXiv
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Hauptverfasser: Gavassino, Lorenzo, Disconzi, Marcelo M., Noronha, Jorge
Format: Preprint
Veröffentlicht: 2023
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author Gavassino, Lorenzo
Disconzi, Marcelo M.
Noronha, Jorge
author_facet Gavassino, Lorenzo
Disconzi, Marcelo M.
Noronha, Jorge
contents We show that linear superpositions of plane waves involving a single-valued, covariantly stable dispersion relation $ω(k)$ always propagate outside the lightcone, unless $ω(k) =a+b k$. This implies that there is no notion of causality for individual dispersion relations, since no mathematical condition on the function $ω(k)$ (such as the front velocity or the asymptotic group velocity conditions) can serve as a sufficient condition for subluminal propagation in dispersive media. Instead, causality can only emerge from a careful cancellation that occurs when one superimposes all the excitation branches of a physical model. This is shown to happen automatically in local theories of matter that are covariantly stable. Hence, we find that the need for nonhydrodynamic modes in relativistic fluid mechanics is analogous to the need for antiparticles in relativistic quantum mechanics.
format Preprint
id arxiv_https___arxiv_org_abs_2307_05987
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Dispersion relations alone cannot guarantee causality
Gavassino, Lorenzo
Disconzi, Marcelo M.
Noronha, Jorge
High Energy Physics - Theory
General Relativity and Quantum Cosmology
Mathematical Physics
Nuclear Theory
We show that linear superpositions of plane waves involving a single-valued, covariantly stable dispersion relation $ω(k)$ always propagate outside the lightcone, unless $ω(k) =a+b k$. This implies that there is no notion of causality for individual dispersion relations, since no mathematical condition on the function $ω(k)$ (such as the front velocity or the asymptotic group velocity conditions) can serve as a sufficient condition for subluminal propagation in dispersive media. Instead, causality can only emerge from a careful cancellation that occurs when one superimposes all the excitation branches of a physical model. This is shown to happen automatically in local theories of matter that are covariantly stable. Hence, we find that the need for nonhydrodynamic modes in relativistic fluid mechanics is analogous to the need for antiparticles in relativistic quantum mechanics.
title Dispersion relations alone cannot guarantee causality
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
Mathematical Physics
Nuclear Theory
url https://arxiv.org/abs/2307.05987