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Main Authors: de Gracia, G. B., Pimentel, B. M.
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2403.10793
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author de Gracia, G. B.
Pimentel, B. M.
author_facet de Gracia, G. B.
Pimentel, B. M.
contents Taking into account the recent developments associated with duality in physics, this article is focused on investigating the properties of a tensor generalization of the electrodynamics dual to the standard vector model even considering the full radiative corrections. A discussion on duality is extended for non-linearly interacting models. The alternative tensor structure allows a new local self-interaction and also a partial gauge invariant mass term. In this way, the renormalization conditions, a new interaction, Ward-Takahashi identities for all the sets of gauge symmetries, and the Schwinger-Dyson quantum equations are carefully provided to consistently characterize the propagating modes of the quantum system. The possibility of this gauge invariant massive extension is considered from the perspective of a generalized Stueckelberg procedure for higher derivative systems.
format Preprint
id arxiv_https___arxiv_org_abs_2403_10793
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Duality as a Method to Derive a Gauge Invariant Massive Electrodynamics and New Interactions
de Gracia, G. B.
Pimentel, B. M.
High Energy Physics - Theory
Taking into account the recent developments associated with duality in physics, this article is focused on investigating the properties of a tensor generalization of the electrodynamics dual to the standard vector model even considering the full radiative corrections. A discussion on duality is extended for non-linearly interacting models. The alternative tensor structure allows a new local self-interaction and also a partial gauge invariant mass term. In this way, the renormalization conditions, a new interaction, Ward-Takahashi identities for all the sets of gauge symmetries, and the Schwinger-Dyson quantum equations are carefully provided to consistently characterize the propagating modes of the quantum system. The possibility of this gauge invariant massive extension is considered from the perspective of a generalized Stueckelberg procedure for higher derivative systems.
title Duality as a Method to Derive a Gauge Invariant Massive Electrodynamics and New Interactions
topic High Energy Physics - Theory
url https://arxiv.org/abs/2403.10793