首页> 外文期刊>International Journal of Theoretical Physics: A Journal of Original Research and Reviews in Theoretical Physics and Related Mathematics, Dedicated to the Unification of Physics >Influence of Gauss-Bonnet Coupling Parameter on the Thermodynamic Properties of Einstein-Gauss-Bonnet and Einstein-Yang-Mills-Gauss-Bonnet Black Holes
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Influence of Gauss-Bonnet Coupling Parameter on the Thermodynamic Properties of Einstein-Gauss-Bonnet and Einstein-Yang-Mills-Gauss-Bonnet Black Holes

机译:高斯-盖子耦合参数对爱因斯坦-高斯-帽子和爱因斯坦-杨-米尔斯-高斯-帽子黑洞热力学性质的影响。

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This paper deals in the thermodynamic properties of Einstein-Gauss-Bonnet and Einstein-Yang-Mills-Gauss-Bonnet black holes. It exhibits the various stable and unstable phases of the black holes in these two modified gravity theories. In the first section, that reveals the various aspects of Einstein-Gauss-Bonnet black holes, we chose to study the changes in the Hawking Temperature with variations in the radius of event horizon (r) and charge (Q); and tried to justify them physically. Secondly in case of Einstein-Yang-Mills-Gauss-Bonnet black holes, we have attempted to compare the changes in the various thermodynamic parameters with varying r and Q; with the Einstein-Gauss-Bonnet black holes at a macroscopic level. Here we have considered the Yang Mills tensor, electromagnetic Lagrangian added to the action integrand. Again this very work deals in drawing out the similarities between these two types of black holes, thereby throwing some light on the aspect of black hole stability. Later we have also introspected the effects of the Gauss-Bonnet coupling parameter α, whose function (6αr), is added as a correction term to the black hole entropy. We have especially focused on what changes does it have upon the nature of the plots as to whether it enhances or reduces the effect of Q on the behavior of the curves. Finally this paper has also kept an eye at estimating the stability domains of the black holes described in these two gravity theories.
机译:本文研究了爱因斯坦-高斯-邦涅特和爱因斯坦-杨-米尔斯-高斯-邦尼黑洞的热力学性质。在这两种修正的重力理论中,它表现出黑洞的各种稳定相和不稳定相。在第一部分中,揭示了爱因斯坦-高斯-贝内特黑洞的各个方面,我们选择研究霍金温度随事件视界半径(r)和电荷(Q)的变化而变化的方法。并试图从身体上证明他们的合理性。其次,在爱因斯坦-杨-米尔斯-高斯-邦尼黑洞的情况下,我们试图比较r和Q变化的各种热力学参数的变化。在宏观层面上带有爱因斯坦-高斯-帽子黑洞。在这里,我们考虑了杨米尔斯张量,将电磁拉格朗日数添加到了动作积分中。再次,这项工作旨在找出这两种类型的黑洞之间的相似性,从而为黑洞稳定性方面提供一些启示。稍后,我们还自省了高斯-邦纳特耦合参数α的作用,该函数的函数(6αr)作为校正项添加到黑洞熵中。我们特别关注它对图的性质有什么变化,即它是增强还是降低了Q对曲线行为的影响。最后,本文还着眼于估计这两种重力理论中描述的黑洞的稳定域。

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