PDM KG-oscillators in cosmic string rainbow gravity spacetime in a non-uniform magnetic field
Abstract
We consider position-dependent mass (PDM) Klein-Gordon (KG) particles in cosmic string rainbow gravity spacetime in a non-uniform magnetic field. The corresponding KG-equation is reduced into the one-dimensional form of the two-dimensional radial Schr\"{o}dinger-oscillator like equation (hence the notion KG-oscillator). We first report on the effects of rainbow gravity on the energy levels of KG-oscillators with constant mass. Next, we include the PDM settings so that KG-oscillators like interaction are introduced. The effects of PDM on the spectra of KG-oscillators in cosmic string rainbow gravity spacetime are also reported. In both cases four pairs of rainbow functions are considered: (a) , g_{_{1}}\left( y\right) =\sqrt{1-\epsilon y^{2}% }, (b) , g_{_{1}}\left( y\right) =\sqrt{% 1-\epsilon y}, (c) , and (d) , , where and is the rainbow parameter. We report that, as long as KG-particles are in point, the rainbow functions pair in (a) is the only pair to emphasis that the Planck energy is the maximum possible energy the KG-particles may have.
Keywords
Cite
@article{arxiv.2301.05464,
title = {PDM KG-oscillators in cosmic string rainbow gravity spacetime in a non-uniform magnetic field},
author = {Omar Mustafa},
journal= {arXiv preprint arXiv:2301.05464},
year = {2023}
}
Comments
This manuscript has been revised/modifies into a completely different context . The reader may wish to see this in arXiv:2304.06546