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 in | Proceedings of the Royal Society. A, Mathematical, physical, and engineering sciences Vol. 478; no. 2262 |
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Format | Journal Article |
Language | English |
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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. |
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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 |
Author_xml | – sequence: 1 givenname: Faizuddin orcidid: 0000-0003-2196-9622 surname: Ahmed fullname: Ahmed, Faizuddin organization: Department of Physics, University of Science & Technology Meghalaya, Ri-Bhoi, Meghalaya 793101, India |
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