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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Fermion analysis of IR modified Ho?ava-Lifshitz gravity: Tunneling and perturbation perspectives
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Fermion analysis of IR modified Ho?ava-Lifshitz gravity: Tunneling and perturbation perspectives

机译:红外修饰的Ho?ava-Lifshitz重力的费米子分析:隧穿和扰动观点

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摘要

In this paper, we investigate the fermion Hawking radiation and quasinormal (QN) modes in infrared (IR) modified Ho?ava-Lifshitz (HL) gravity under tunneling and perturbation perspectives. Firstly, through the fermion tunneling in IR modified HL gravity, we obtain the Hawking radiation emission rate, tunneling temperature and entropy for the Kehagias-Sfetsos black hole. It is found that the results of fermion tunneling are consistent with the thermodynamics results obtained by calculating surface gravity. Secondly, we numerically calculate the low-lying QN mode frequencies of fermion perturbations by using WKB formulas including the third-order and sixth-order approximations simultaneously. It turns out that the actual frequency of fermion perturbation is larger than that in the Schwarzschild case, and the damping rate is smaller than that for the pure Schwarzschild. The results of fermion perturbation suggest the QN modes could live longer in HL gravity.
机译:在本文中,我们研究了在隧穿和扰动情况下,在红外(IR)修改的Ho?ava-Lifshitz(HL)重力作用下的费米子霍金辐射和准正规(QN)模式。首先,通过红外修饰的HL重力下的费米子隧穿,获得了Kehagias-Sfetsos黑洞的霍金辐射发射率,隧穿温度和熵。发现费米隧道效应的结果与通过计算表面重力获得的热力学结果一致。其次,我们通过同时使用包含三阶和六阶近似的WKB公式,数值计算了费米子扰动的低层QN模频率。事实证明,费米子扰动的实际频率比Schwarzschild情况大,阻尼率也比纯Schwarzschild情况小。费米子摄动的结果表明,QN模式在HL重力下可以生存更长的时间。

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