Effects of rainbow gravity on an electron confined to a triangular well and a periodic potential

K. Bakke, C. R. Muniz
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Abstract

We investigate quantum effects concerning the modification of the background via rainbow gravity on an electron. We employ the nonrelativistic approximation of the Dirac equation to analyze these effects in depth. We initially study the interaction between an electron and a uniform electric field, by exploring confinement of the particle to a triangular potential well. We find systematic alterations in the energy levels reliant on the rainbow parameter $\epsilon$. Additionally, we investigate a particle in a periodic potential resembling a ring. We also find consistent alterations in energy levels due to changes in the background via rainbow functions. As in the previously analyzed scenario, as larger the rainbow parameter the lower the obtained energy levels. These findings underscore a systematic influence of modified gravity on particle dynamics in quantum scenarios.
彩虹引力对限制在三角井和周期势中的电子的影响
我们研究了通过电子上的彩虹引力改变背景的量子效应。我们采用狄拉克方程的非相对论近似来深入分析这些效应。我们首先研究了电子与均匀电场之间的相互作用,探索了将粒子限制在三角形势阱中的方法。我们发现能级的系统变化依赖于彩虹参数 $\epsilon$。此外,我们还研究了粒子在类似环的周期势中的情况。我们还通过彩虹函数发现了由于背景变化而引起的能级的一致变化。与之前分析的情况一样,彩虹参数越大,得到的能级越低。这些发现强调了修正引力对量子情景中粒子动力学的系统性影响。
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