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Thermodynamic geodesics of a Reissner Nordstrom black hole

机译:Reissner Nordstrom黑洞的热力学测地线

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Starting from a Geometrothermodynamics metric for the space of thermodynamic equilibrium states in the mass representation, we use numerical techniques to analyse the thermodynamic geodesics of a supermassive Reissner Nordstrom black hole in isolation. Appropriate constraints are obtained by taking into account the processes of Hawking radiation and Schwinger pair-production. We model the black hole in line with the work of Hiscock andWeems (Phys Rev D 41: 1142-1151, 1990). It can be deduced that the relation which the geodesics establish between the entropy S and electric charge Q of the black hole extremises changes in the black hole's mass. Indeed, the expression for the entropy of an extremal black hole is an exact solution to the geodesic equation. We also find that in certain cases, the geodesics describe the evolution brought about by the constant emission of Hawking radiation and charged-particle pairs.
机译:从质量表示中热力学平衡态空间的地球热力学度量开始,我们使用数值技术孤立地分析超大质量Reissner Nordstrom黑洞的热力学测地线。通过考虑霍金辐射和施温格对产生的过程,可以获得适当的约束。我们根据Hiscock和Weems的工作(Phys Rev D 41:1142-1151,1990)对黑洞进行建模。可以推断,测地线在黑洞的熵S和电荷Q之间建立的关系使黑洞的质量变化极端化。事实上,极值黑洞熵的表达式是测地线方程的精确解。我们还发现,在某些情况下,测地线描述了霍金辐射和带电粒子对的持续发射带来的演变。

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