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首页> 外文期刊>General Relativity and Gravitation: GRG Journal >Hawking radiation of charged rotating AdS black holes in conformal gravity for charged massive particles, complex scalar and Dirac particles
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Hawking radiation of charged rotating AdS black holes in conformal gravity for charged massive particles, complex scalar and Dirac particles

机译:共形重力下带电旋转AdS黑洞的Hawking辐射,用于带电块状粒子,复杂标量和Dirac粒子

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Extending researches on Hawking radiation to conformal gravity theory, we discuss Hawking radiation of different particles across charged rotating anti-de Sitter black holes in conformal gravity, including charged massive particles, complex scalar and spin - 1/2 Dirac particles. To make the study of rotating black holes' tunneling radiation get rid of the dependence on dragging coordinate systems, we investigate the radiation without dragging coordinate transformations. The previous geodesic derivation existed some shortcomings. Not only did geodesics of massive and massless particles are derived by using quite different approaches, but also the treatment for massive case was inconsistent with the variation principle of action. Recently, Wu et al. have remedied the shortcomings. In this paper, we introduce the improved treatment in conformal gravity and derive geodesic equations of massive and massless particles in a unified and self-consistent way. Although the result that the black holes' entropy is not one-quarter of horizon area differs from that in Einstein gravity, the tunneling probability of charged massive particles in conformal gravity is still related to the change of Bekenstein-Hawking entropy
机译:将霍金辐射的研究扩展到共形引力理论,我们讨论了在共形重力中穿过带电旋转反de Sitter黑洞的不同粒子的霍金辐射,包括带电的大质量粒子,复标量和自旋-1/2 Dirac粒子。为了使旋转黑洞的隧穿辐射的研究摆脱对拖动坐标系的依赖,我们在不进行拖动坐标变换的情况下研究了辐射。以前的测地线推导存在一些缺点。大块和无块粒子的测地线不仅是通过使用完全不同的方法得出的,而且对大块情况的处理也与作用的变化原理不一致。最近,吴等。弥补了这些缺点。在本文中,我们介绍了共形重力的改进处理方法,并以统一和自洽的方式导出了质量块和无质量颗粒的测地线方程。尽管黑洞的熵不是视界面积的四分之一的结果不同于爱因斯坦引力的结果,但带形块体在共形引力中的隧穿概率仍与贝肯斯坦-霍金熵的变化有关。

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