Title
Gupta-Bleuler's quantization of a parity-odd CPT -even electrodynamics of the standard model extension
Date Issued
19 December 2016
Access level
open access
Resource Type
journal article
Author(s)
Universidade Federal Do Maranhão
Abstract
Following a successfully quantization scheme previously developed in Ref. [R. Casana, M. M. Ferreira, Jr., and F. E. P. dos Santos, Phys. Rev. D 90, 105025 (2014).] for a parity-even gauge sector of the SME, we have established the Gupta-Bleuler quantization of a parity-odd and CPT-even electrodynamics of the standard model extension (SME) without the need for a small photon mass regulator. Keeping the photons massless, we have adopted the gauge-fixing condition: G(Aμ)=(∂0+κ0j∂j)(A0+κ0kAk)+∂iAi. The four polarization vectors of the gauge field are exactly determined by solving an eigenvalue problem, exhibiting birefringent second-order contributions in the Lorentz-violating parameters. They allow us to express the Hamiltonian in terms of annihilation and creation operators whose positivity is guaranteed by imposing a weak Gupta-Bleuler constraint, defining the physical states. Consequently, we compute the field commutation relation that has been expressed in terms of Pauli-Jordan functions modified by Lorentz violation whose light-cone structures have allowed us to analyze the microcausality issue.
Volume
94
Issue
12
Language
English
OCDE Knowledge area
Física de partículas, Campos de la Física
Scopus EID
2-s2.0-85019616648
Source
American Physical Society
ISSN of the container
24700010
Sponsor(s)
We thank CAPES, CNPq, and FAPEMA (Brazilian agencies) for partial financial support.
Sources of information:
Directorio de Producción Científica
Scopus