Relativistic Dispersion Spectra across Lorentz boosted frames: Spurious modes and the enigma of causality
Sayantani Bhattacharyya, Sukanya Mitra, Shuvayu Roy, Rajeev Singh

TL;DR
This paper develops a framework to derive dispersion spectra in Lorentz-boosted frames, revealing unphysical spurious modes and analyzing their implications for causality in relativistic theories.
Contribution
It introduces a novel method for obtaining boosted dispersion spectra from rest frame data and explores the relationship between spurious modes and causality.
Findings
Well-behaved modes follow an exact boost mapping
Spurious modes diverge at zero boost and lack rest-frame analogues
Causality constraints relate to the presence of spurious modes
Abstract
The analysis of linearized perturbations in relativistic field theories involving derivative corrections frequently leads to pathologies that, although generic, may not always be manifest, like in a local rest frame scenario. Hence, analyzing such theories conclusively in a more general state of equilibrium, like in a Lorentz boosted inertial frame, is imperative, albeit extracting the boosted modes could be quite nontrivial. Motivated by this problem, in this study, we develop a general framework for deriving the dispersion spectra in Lorentz-boosted inertial frames solely from the information of the local rest frame dispersion coefficients. Apart from the well-behaved modes, which are observed to follow an exact mapping across the boost, we show that in some cases, unphysical ``spurious" modes might turn up, which diverge at zero boost limit and thus lack any rest-frame analogue.…
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Taxonomy
TopicsLaser-Plasma Interactions and Diagnostics · Pulsars and Gravitational Waves Research · Astrophysics and Cosmic Phenomena
