The Correction of Quantum Tunneling Rate and Entropy of Non-Stationary Spherically Symmetric Black Hole by Lorentz Breaking

The Correction of Quantum Tunneling Rate and Entropy of Non-Stationary Spherically Symmetric Black Hole by Lorentz Breaking
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DOI:
10.3390/universe9070306
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发表时间:
2023-06
期刊:
影响因子:
2.9
通讯作者:
Yuzhen Liu;Xia Tan;Jie Zhang;Ran Li;Shu-Zheng Yang
Yuzhen Liu;Xia Tan;Jie Zhang;Ran Li;Shu-Zheng Yang
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
Yuzhen Liu;Xia Tan;Jie Zhang;Ran Li;Shu-Zheng Yang

文献摘要

相似文献

引入CFJ修正项、手征修正项和类醚修正项,基于Lorentz破缺、WKB近似和黑洞的量子隧穿辐射理论,研究了一般动态球对称黑洞时空中修正的费米子动力学方程,得到了费米子隧穿速率、Hawking温度、和黑洞的Bekenstein-Hawking熵。这个黑洞有热辐射和非热辐射。本文还研究了洛伦兹破缺对狄拉克粒子能级的影响,得到了狄拉克能级在时空中的分布特征和正负能级交叉的最大值。并对相应结果进行了必要的讨论和解释。
With the introduction of CFJ correction term, Chiral correction term, and aether-like correction term, based on Lorentz breaking, WKB approximate, and quantum tunneling radiation theory of black holes, the modified fermion dynamics equation is studied in the general non-stationary spherically symmetric black hole space-time, and the new modified expressions of the fermion tunneling rate, the Hawking temperature, and the Bekenstein–Hawking entropy of the black hole are obtained. This black hole has both thermal and non-thermal radiation. In this article, the influence of Lorentz breaking on the energy levels of Dirac particles was also studied, and the distribution characteristics of Dirac energy levels in the space-time and the maximum value of the crossing of positive and negative energy levels were obtained. The necessary discussion and the explanation of the corresponding results are made.