Generalised Non-Linear Electrodynamics: classical picture and effective mass generation

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Main Authors: Dib, Abedennour, Helayël-Neto, José A., Spallicci, Alessandro D. A. M.
Format: Preprint
Published: 2025
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author Dib, Abedennour
Helayël-Neto, José A.
Spallicci, Alessandro D. A. M.
author_facet Dib, Abedennour
Helayël-Neto, José A.
Spallicci, Alessandro D. A. M.
contents Starting from a generic Lagrangian, we discuss the number of propagating degrees of freedom in the framework of generalised non-linear electrodynamics when a photon-background split is applied. We start by stating results obtained in a previous paper, before modifying the action to an equivalent form. Within this new formulation, we highlight the presence of an effective mass and consider the mechanical reduction of the model to ensure the positivity of said mass. We then study the constraint algebra of the model and show that we shift from a model with two first-class to two second-class constraints, which implies the propagation of an additional degree of freedom. We also show that the Hamiltonian is bound from below and thus does not suffer from Ostrogradski-type instabilities. We conclude by deriving the propagator for the model, and discussing the potential link between the nature of this additional polarisation and the mechanism behind the effective mass generation in this class of models.
format Preprint
id arxiv_https___arxiv_org_abs_2507_05277
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Generalised Non-Linear Electrodynamics: classical picture and effective mass generation
Dib, Abedennour
Helayël-Neto, José A.
Spallicci, Alessandro D. A. M.
High Energy Physics - Phenomenology
Starting from a generic Lagrangian, we discuss the number of propagating degrees of freedom in the framework of generalised non-linear electrodynamics when a photon-background split is applied. We start by stating results obtained in a previous paper, before modifying the action to an equivalent form. Within this new formulation, we highlight the presence of an effective mass and consider the mechanical reduction of the model to ensure the positivity of said mass. We then study the constraint algebra of the model and show that we shift from a model with two first-class to two second-class constraints, which implies the propagation of an additional degree of freedom. We also show that the Hamiltonian is bound from below and thus does not suffer from Ostrogradski-type instabilities. We conclude by deriving the propagator for the model, and discussing the potential link between the nature of this additional polarisation and the mechanism behind the effective mass generation in this class of models.
title Generalised Non-Linear Electrodynamics: classical picture and effective mass generation
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2507.05277