Probing the interference between non-linear, axionic and space-time-anisotropy effects in the QED vacuum
J. M. A. Paix\~ao, L. P. R. Ospedal, M. J. Neves, J. A. Helay\"el-Neto

TL;DR
This paper investigates how non-linear electrodynamics, axion fields, and Lorentz-symmetry violation interact in the quantum electrodynamics vacuum, analyzing their combined effects on wave propagation, birefringence, and material properties.
Contribution
It introduces a unified Lagrangian combining non-linearity, axions, and Lorentz-symmetry violation, and studies their interference effects on vacuum properties and wave behavior.
Findings
Derived dispersion relations for different magnetic backgrounds.
Analyzed birefringence phenomena under combined effects.
Compared impacts of Euler-Heisenberg, Born-Infeld, and Modified Maxwell models.
Abstract
We pursue the investigation of a generic non-linear extension of axionic electrodynamics in a Carroll-Field-Jackiw (CFJ) scenario that implements Lorentz-symmetry violation (LSV). The model we inspect consists of an arbitrary non-linear electrodynamic action coupled to the axion field in presence of an anisotropy four-vector that realizes the breaking of Lorentz symmetry under the particle point of view. The non-linear electromagnetic field is expanded around a constant and uniform magnetic background up to second order in the propagating photon field. The focus of our attention is the study of the material properties of the vacuum in the particular case of a space-like CFJ -vector. The dispersion relations associated to the plane wave solutions are explicitly worked out in two situations: the magnetic background perpendicular and parallel to the wave direction. We extend these…
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Taxonomy
TopicsNoncommutative and Quantum Gravity Theories · Cosmology and Gravitation Theories · Relativity and Gravitational Theory
