Klein-Gordon Oscillator Subject to a Coulomb-type Potential in Bonnor-Melvin Universe with a Cosmological Constant
In this work we study spin-0 particles described by the Klein-Gordon oscillator formalism in a spacetime which structure is determined by a homogeneous magnetic field and a cosmological constant. For this purpose we take into account a framework based on the Bonnor-Melvin solution with the inclusion...
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Published in | Few-body systems Vol. 66; no. 1; p. 7 |
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01.03.2025
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Abstract | In this work we study spin-0 particles described by the Klein-Gordon oscillator formalism in a spacetime which structure is determined by a homogeneous magnetic field and a cosmological constant. For this purpose we take into account a framework based on the Bonnor-Melvin solution with the inclusion of the cosmological constant. We write and solve the Klein-Gordon equation, and then find the energy spectrum by considering the effect of vector and scalar potentials. |
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AbstractList | In this work we study spin-0 particles described by the Klein-Gordon oscillator formalism in a spacetime which structure is determined by a homogeneous magnetic field and a cosmological constant. For this purpose we take into account a framework based on the Bonnor-Melvin solution with the inclusion of the cosmological constant. We write and solve the Klein-Gordon equation, and then find the energy spectrum by considering the effect of vector and scalar potentials. |
ArticleNumber | 7 |
Author | Barros, C. C. Barbosa, L. G. |
Author_xml | – sequence: 1 givenname: L. G. surname: Barbosa fullname: Barbosa, L. G. – sequence: 2 givenname: C. C. surname: Barros fullname: Barros, C. C. |
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SubjectTerms | Black holes Cosmological constant Electrons Energy spectra Klein-Gordon equation Magnetic fields Oscillators Particle spin Quantum field theory Spacetime Theory of relativity Universe |
Title | Klein-Gordon Oscillator Subject to a Coulomb-type Potential in Bonnor-Melvin Universe with a Cosmological Constant |
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