Hamiltonian vs Lagrangian embedding of a massive spin-one theory involving two-form field

dc.contributor.author Harikumar, E.
dc.contributor.author Sivakumar, M.
dc.date.accessioned 2022-03-27T11:30:19Z
dc.date.available 2022-03-27T11:30:19Z
dc.date.issued 2002-01-30
dc.description.abstract We consider the Hamiltonian and Lagrangian embedding of a first-order, massive spin-one, gauge noninvariant theory involving antisymmetric tensor field. We apply the BFV-BRST generalized canonical approach to convert the model to a first class system and construct nilpotent BFV-BRST charge and a unitarizing Hamiltonian. The canonical analysis of the Stückelberg formulation of this model is presented. We bring out the contrasting feature in the constraint structure, specifically with respect to the reducibility aspect, of the Hamiltonian and the Lagrangian embedded model. We show that to obtain manifestly covariant Stückelberg Lagrangian from the BFV embedded Hamiltonian, phase space has to be further enlarged and show how the reducible gauge structure emerges in the embedded model.
dc.identifier.citation International Journal of Modern Physics A. v.17(3)
dc.identifier.issn 0217751X
dc.identifier.uri 10.1142/S0217751X02006006
dc.identifier.uri https://www.worldscientific.com/doi/abs/10.1142/S0217751X02006006
dc.identifier.uri https://dspace.uohyd.ac.in/handle/1/13541
dc.subject BFV-BRST
dc.subject Hamiltonian and Lagrangian embedding
dc.subject Massive spin-one theory
dc.title Hamiltonian vs Lagrangian embedding of a massive spin-one theory involving two-form field
dc.type Journal. Article
dspace.entity.type
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