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首页> 外文期刊>Physics letters >Hawking radiation as tunneling from charged black holes in 0A string theory
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Hawking radiation as tunneling from charged black holes in 0A string theory

机译:在0A弦理论中霍金辐射是从带电黑洞隧穿而来

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There has been much work on explaining Hawking radiation as a quantum tunneling process through horizons. Basically, this intuitive picture requires the calculation of the imaginary part of the action for outgoing particle. And two ways are known for achieving this goal: the null-geodesic method and the Hamilton–Jacobi method. We apply these methods to the charged black holes in 2D dilaton gravity which is originated from the low energy effective theory of type 0A string theory. We derive the correct Hawking temperature of the black holes including the effect of the back reaction of the radiation, and obtain the entropy by using the 1st law of black hole thermodynamics. For fixed-charge ensemble, the 0A black holes are free of phase transition and thermodynamically stable regardless of mass-charge ratio. We show this by interpreting the back reaction term as the inverse of the heat capacity of the black holes. Finally, the possibility of the phase transition in the fixed-potential ensemble is discussed.
机译:在解释霍金辐射是通过视界的量子隧穿过程方面,已有许多工作要做。基本上,此直观图片需要计算出粒子的动作的虚部。已知有两种方法可以实现这一目标:零大地测量法和汉密尔顿-雅各比法。我们将这些方法应用于二维Dilaton重力中的带电黑洞,该黑洞源自0A型弦理论的低能效理论。我们推导出包括辐射反作用效应在内的黑洞的正确霍金温度,并利用黑洞热力学第一定律获得熵。对于固定电荷合奏,无论质荷比如何,0A黑洞都没有相变且热力学稳定。我们通过将逆反应项解释为黑洞热容量的倒数来证明这一点。最后,讨论了固定电位系中相变的可能性。

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