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      LIV effects on the quantum stochastic motion in an acoustic FRW-geometry

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          Abstract

          It is well known in the literature that vacuum fluctuations can induce a random motion of particles which is sometimes called quantum Brownian motion or quantum stochastic motion. In this paper, we consider Lorentz Invariance Violation (LIV) in an acoustic spatially flat Friedman-Robertson-Walker (FRW) geometry. In particular, we are looking for the LIV effects in the stochastic motion of scalar and massive test particles. This motion is induced by a massless quantized scalar field on this geometry, which in turn is derived from an Abelian Higgs model with LIV. Deviations in the velocity dispersion of the particles proportional to the LIV parameter are found.

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          Author and article information

          Journal
          17 June 2021
          Article
          2106.09684
          98bdcaca-52df-4721-a941-5d7b44fb8c5f

          http://creativecommons.org/licenses/by/4.0/

          History
          Custom metadata
          12 pages, 2 figures
          gr-qc hep-th

          General relativity & Quantum cosmology,High energy & Particle physics
          General relativity & Quantum cosmology, High energy & Particle physics

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