On Lagrangian Formulations for (Ir)Reducible Mixed-antisymmetric Higher Integer Spin Fields in Minkowski Spaces; Moscow University Physics Bulletin; Vol. 80, iss. 2

Détails bibliographiques
Parent link:Moscow University Physics Bulletin.— .— Berlin: Springer Nature
Vol. 80, iss. 2.— 2025.— P. S692–S702
Auteur principal: Reshetnyak А. А. Aleksandr Aleksandrovich
Autres auteurs: Bogdanova J. V. Julia Vyacheslavovna, Pandey V. K. Vipul
Résumé:Title screen
We extend the results of Lagrangian formulations study to construct gauge-invariant Lagrangians for (ir)reducible integer higher-spin massless and massive representations of the Poincaré group with a Young tableau in -dimensional flat space-time (as the probable candidates to describe the dark matter problem beyond the SM). These particles are described within a metric-like formulation by tensor fields with 3 groups of antisymmetric Lorentz indices on a basis of the BRST method with complete, , and incomplete, , BRST operators. We found unconstrained (with ) and constrained (with and off-shell BRST invariant holonomic constraints) gauge Lagrangian formulations with different configuration spaces and reducibility stages. The deformation procedure to construct interacting gauge model with mixed-antisymmetric fields is proposed
AM_Agreement
Langue:anglais
Publié: 2025
Sujets:
Accès en ligne:https://doi.org/10.3103/S0027134925702480
Format: Électronique Chapitre de livre
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=687751

MARC

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330 |a We extend the results of Lagrangian formulations study to construct gauge-invariant Lagrangians for (ir)reducible integer higher-spin massless and massive representations of the Poincaré group with a Young tableau in -dimensional flat space-time (as the probable candidates to describe the dark matter problem beyond the SM). These particles are described within a metric-like formulation by tensor fields with 3 groups of antisymmetric Lorentz indices on a basis of the BRST method with complete, , and incomplete, , BRST operators. We found unconstrained (with ) and constrained (with and off-shell BRST invariant holonomic constraints) gauge Lagrangian formulations with different configuration spaces and reducibility stages. The deformation procedure to construct interacting gauge model with mixed-antisymmetric fields is proposed 
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