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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Einstein-Gauss-Bonnet black holes with a perturbative nonlinear electrodynamics: Geometrical thermodynamics
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Einstein-Gauss-Bonnet black holes with a perturbative nonlinear electrodynamics: Geometrical thermodynamics

机译:爱因斯坦-Gauss-Bonnet黑洞,具有扰动非线性电动电动:几何热力学

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摘要

Taking into account the perturbative corrections of Einstein (EN)-Maxwell gravity, we study thermodynamical behavior of the black holes in the context of geometrical thermodynamics (GT). We consider a quadratic Maxwell invariant as a correction of Maxwell theory in electromagnetic viewpoint and Gauss-Bonnet (GB) gravity as a correction of EN theory in gravitational point of view. We study thermodynamical phase transition and show that employing Weinhold, Ruppeiner and Quevedo approaches fails to produce desirable results. Next, Hendi-Panahiyan-Eslam Panah-Momennia (HPEM) metric will be employed in order to study GT of the solutions. We show that this metric is capable of matching all the divergence points of its thermodynamical curvature scalar with phase transition and bound points. Moreover, the effects of the variation of different parameters on phase transition points will be investigated.
机译:考虑到爱因斯坦(EN)-Maxwell重力的扰动矫正,我们在几何热力学(GT)背景下研究了黑洞的热力学行为。 我们考虑一个二次麦克斯韦不变,作为麦克斯韦理论在电磁观点和高斯 - 帽(GB)重力中的校正,作为对引力观的校正理论。 我们研究热力学阶段过渡并表明雇用Weinhold,Ruppeiner和Quevedo方法未能产生所需的结果。 接下来,将采用Hendi-Panahiyan-Eslam Panah-Momennia(HPEM)指标,以研究GT的解决方案。 我们表明该度量能够与相位过渡和绑定点匹配其热力学曲率标量的所有发散点。 此外,研究了不同参数变化对相变点的影响。

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