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Main Authors: Shi, Yang, Wang, Towe
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2403.20044
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author Shi, Yang
Wang, Towe
author_facet Shi, Yang
Wang, Towe
contents The nonlinear electrodynamics proposed by Bandos, Lechner, Sorokin and Townsend is a remarkable theory that unifies Maxwell, Bialynicki-Birula and ModMax theories, which are known theories invariant under conformal transformations and electromagnetic duality transformations. In the Bandos-Lechner-Sorokin-Townsend nonlinear electrodynamics, we calculate the energy flux density, dispersion relations, refractive indices, phase and group velocities of plane waves as well as the changes of the photon wavelength in the Compton scattering process in the presence of a constant uniform electromagnetic background. Our results are useful for testing and constraining this new theory of nonlinear electrodynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2403_20044
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Compton scattering in Bandos-Lechner-Sorokin-Townsend nonlinear electrodynamics
Shi, Yang
Wang, Towe
High Energy Physics - Phenomenology
Optics
The nonlinear electrodynamics proposed by Bandos, Lechner, Sorokin and Townsend is a remarkable theory that unifies Maxwell, Bialynicki-Birula and ModMax theories, which are known theories invariant under conformal transformations and electromagnetic duality transformations. In the Bandos-Lechner-Sorokin-Townsend nonlinear electrodynamics, we calculate the energy flux density, dispersion relations, refractive indices, phase and group velocities of plane waves as well as the changes of the photon wavelength in the Compton scattering process in the presence of a constant uniform electromagnetic background. Our results are useful for testing and constraining this new theory of nonlinear electrodynamics.
title Compton scattering in Bandos-Lechner-Sorokin-Townsend nonlinear electrodynamics
topic High Energy Physics - Phenomenology
Optics
url https://arxiv.org/abs/2403.20044