Relativistic quantum oscillator under rainbow gravity's effects in traversable wormhole with disclination
arXiv:2402.00088 · doi:10.1142/S0217751X23501798
Abstract
In this paper, our principal objective is to investigate the impact of disclination and throat radius of a three-dimensional traversable wormhole on quantum oscillator fields. Specifically, we focus on Perry-Mann-type wormhole with disclination while also considering the influence of rainbow gravity's. We derive the radial equation of the relativistic Klein-Gordon oscillator within this wormhole background under the effects of gravity's rainbow and the analytical eigenvalue solution is obtained using the confluent Heun function. In fact, we show that the behavior of the oscillator fields is significantly influenced not only by the presence of disclination and the throat radius but also by the parameter of rainbow gravity's. We choose various such rainbow functions to present and analyze the eigenvalue solutions of the quantum oscillator fields.
16 pages; 7 figures; accepted in IJMPA (https://doi.org/10.1142/S0217751X23501798)
References in corpus (8)
- Absence of an Effective Horizon for Black Holes in Gravity's Rainbow
- Gravitational Collapse in Gravity's Rainbow
- PDM KG-Coulombic particles in cosmic string rainbow gravity spacetime and a uniform magnetic field
- Landau Levels in the Presence of a Cosmic String in Rainbow Gravity
- Casimir Effect in the Rainbow Einstein's Universe
- Linear confinement of generalized KG-oscillator with a uniform magnetic field in Kaluza-Klein theory and Aharonov-Bohm effect
- Dark Energy Star in Gravity's Rainbow
- Time delay of light signals in an energy-dependent spacetime metric