Effects of Lorentz symmetry breaking by a tensor field subject to Coulomb-type potential on relativistic quantum oscillator

In this paper, we solve the Klein–Gordon oscillator analytically under Lorentz-violating effects defined by a tensor field subject to a Coulomb-type scalar potential. We obtain the bound-state solutions of the quantum system by choosing various electromagnetic field configurations and discuss the ef...

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Published inProceedings of the Royal Society. A, Mathematical, physical, and engineering sciences Vol. 478; no. 2262
Main Author Ahmed, Faizuddin
Format Journal Article
LanguageEnglish
Published 29.06.2022
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Abstract In this paper, we solve the Klein–Gordon oscillator analytically under Lorentz-violating effects defined by a tensor field subject to a Coulomb-type scalar potential. We obtain the bound-state solutions of the quantum system by choosing various electromagnetic field configurations and discuss the effects on the energy profiles and the wave function of these oscillator fields.
AbstractList In this paper, we solve the Klein–Gordon oscillator analytically under Lorentz-violating effects defined by a tensor field subject to a Coulomb-type scalar potential. We obtain the bound-state solutions of the quantum system by choosing various electromagnetic field configurations and discuss the effects on the energy profiles and the wave function of these oscillator fields.
Author Ahmed, Faizuddin
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  organization: Department of Physics, University of Science & Technology Meghalaya, Ri-Bhoi, Meghalaya 793101, India
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