Effect of a critical magnetic field on the control of scalar neutral boson pair production in the context of Lorentz-symmetry violation

Fuente: arXiv
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Main Authors: Jirón, Andrés G., Obispo, Angel E., Loayza, J. Daniel Espinoza, Quispe, Juan Carlos, Castro, Luis B.
Format: Preprint
Published: 2024
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author Jirón, Andrés G.
Obispo, Angel E.
Loayza, J. Daniel Espinoza
Quispe, Juan Carlos
Castro, Luis B.
author_facet Jirón, Andrés G.
Obispo, Angel E.
Loayza, J. Daniel Espinoza
Quispe, Juan Carlos
Castro, Luis B.
contents This study investigates the production of neutral scalar boson pairs in static electromagnetic fields resulting from Lorentz-symmetry violation (LSV), with a focus on the parity-even sector of the CPT-even photon sector in the Standard Model Extension (SME). Utilizing a cross-configuration involving inhomogeneous static electric fields and homogeneous static magnetic fields, the analysis of the probability of bosons pair production identifies three different regimes determined by critical magnetic field. Below the critical value, creation is exponentially suppressed; at the critical value, the number density of created bosons remains constant, and above the critical field, there is exponential amplification. This behavior prompts an additional investigation using von Neumann entanglement entropy to analyze fluctuations in the bosonic vacuum.
format Preprint
id arxiv_https___arxiv_org_abs_2401_16143
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Effect of a critical magnetic field on the control of scalar neutral boson pair production in the context of Lorentz-symmetry violation
Jirón, Andrés G.
Obispo, Angel E.
Loayza, J. Daniel Espinoza
Quispe, Juan Carlos
Castro, Luis B.
High Energy Physics - Theory
High Energy Physics - Phenomenology
Quantum Physics
This study investigates the production of neutral scalar boson pairs in static electromagnetic fields resulting from Lorentz-symmetry violation (LSV), with a focus on the parity-even sector of the CPT-even photon sector in the Standard Model Extension (SME). Utilizing a cross-configuration involving inhomogeneous static electric fields and homogeneous static magnetic fields, the analysis of the probability of bosons pair production identifies three different regimes determined by critical magnetic field. Below the critical value, creation is exponentially suppressed; at the critical value, the number density of created bosons remains constant, and above the critical field, there is exponential amplification. This behavior prompts an additional investigation using von Neumann entanglement entropy to analyze fluctuations in the bosonic vacuum.
title Effect of a critical magnetic field on the control of scalar neutral boson pair production in the context of Lorentz-symmetry violation
topic High Energy Physics - Theory
High Energy Physics - Phenomenology
Quantum Physics
url https://arxiv.org/abs/2401.16143