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Rainbow gravity effects on quantum dynamics of scalar and oscillator fields in a topological defect cosmological space-time

2024/01/24 by Faizuddin Ahmed, Abdelmalek Bouzenada, Ahmed, Faizuddin +1
Physics and Astronomy · #Noncommutative and Quantum Gravity Theories #Black Holes and Theoretical Physics #Quantum Electrodynamics and Casimir Effect

paper · pdf · doi:10.48550/arxiv.2401.13718

Abstract

In this paper, we investigate the quantum dynamics of scalar and oscillator fields in a topological defect space-time background under the influence of rainbow gravity's. The rainbow gravity's are introduced into the considered cosmological space-time geometry by replacing the temporal part dt → (dt)/(F(χ)) and the spatial part dxi → (dxi)/(H (χ)), where F, H are the rainbow functions and χ=E/Ep. We derived the radial equation of the Klein-Gordon equation and its oscillator equation under rainbow gravity's in topological space-time. To obtain eigenvalue of the quantum systems under investigations, we set the rainbow functions F(χ)=1 and H(χ)=√(1-β χp), where p=1,2. We solve the radial equations through special functions using these rainbow functions and analyze the results. In fact, it is shown that the presence of cosmological constant, the topological defect parameter α, and the rainbow parameter β modified the energy spectrum of scalar and oscillator fields in comparison to the results obtained in flat space.

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