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Entropy of Reissner-Nordstrom-De Sitter Black Hole in Nonthermal Equilibrium

机译:非热平衡下Reissner-Nordstrom-De Sitter黑洞的熵

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摘要

By making use of the method of quantum statistics, we directly derive the partition function of bosonic and fermionic fields in Reissner-Nordstrom-De Sitter black hole and obtain the integral expression of black hole's entropy and the entropy to which the cosmic horizon surface corresponds. It avoids the difficulty in solving the wave equation of various particles. Then via the improved brick-wall method, i.e. the membrane model, we calculate black hole's entropy and cosmic entropy and find out that if we let the integral upper limit and lower limit both tend to the horizon, the entropy of black hole is proportional to the area of horizon and the entropy to which cosmic horizon surface corresponds is proportional to the area of cosmic horizon. In our result, the stripped term and the divergent logarithmic term in the original brick-wall method no longer exist. In the whole process, the physical idea is clear and the calculation is simple. We offer a new simple and direct way for calculating the entropy of different complicated black holes.
机译:利用量子统计的方法,我们直接推导了Reissner-Nordstrom-De Sitter黑洞中的波场和费米子场的分配函数,得到了黑洞熵和宇宙视界表面所对应的熵的积分表达式。它避免了求解各种粒子的波动方程的困难。然后通过改进的砖墙方法,即膜模型,计算黑洞的熵和宇宙熵,发现如果让积分上限和下限都趋于水平,则黑洞的熵与视界的面积和宇宙视界表面所对应的熵与宇宙视界的面积成比例。在我们的结果中,原始砖墙方法中的去除项和发散对数项不再存在。在整个过程中,物理思想清晰,计算简单。我们提供了一种新的简单直接的方法来计算不同复杂黑洞的熵。

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