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首页> 外文期刊>European physical journal >Thermodynamic properties of novel black hole solutions in the Einstein–Born–Infeld-dilaton gravity theory
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Thermodynamic properties of novel black hole solutions in the Einstein–Born–Infeld-dilaton gravity theory

机译:爱因斯坦出生于Infeld-Dilaton引力理论中新型黑洞解决方案的热力学性质

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The exact solutions of coupled scalar, electromagnetic and gravitational field equations have been obtained in the framework of Einstein-dilaton gravity theory which is coupled to the Born–Infeld nonlinear electrodynamics. The solutions show that Einstein–Born–Infeld-dilaton gravity theory admits three novel classes of nonlinearly charged black hole solutions with the non-flat and non-AdS asymptotic behavior. Some of the solutions, in addition to the naked singularity, extreme and two-horizon black holes, produce one- and multi-horizon black holes too. The electric charge, mass and other thermodynamic quantities of the black holes have been calculated and it has been proved that they satisfy the standard form of the thermodynamical first law. The black hole local stability has been investigated by use of the canonical ensemble method. Noting the black hole heat capacity the points of type-one and type-two phase transitions and the locally stable black holes have been identified exactly. By use of the thermodynamic geometry, and noting the divergent points of the thermodynamic metric proposed by HEPM, it has been shown that the results of this method are consistent with those of canonical ensemble method. Global stability and Hawking–Page phase transition points have been studied by use of the grand canonical ensemble method and regarding the Gibbs free energy of the black holes. By calculating the Gibbs free energies, we characterized the ranges of horizon radii in which the black holes remain globally stable or prefer the radiation phase.
机译:在Einstein-Dilaton重力理论的框架中获得了耦合标量,电磁和重力场方程的确切解,其耦合到出生于熵的非线性电动电动电动。该解决方案表明,爱因斯坦出生于infeld-Dilaton引力理论承认三种新颖的非线性带电黑洞解决方案,具有非平面和非ADS渐近行为。一些解决方案,除了裸体奇点,极端和两种地平线黑洞外,也会产生一个和多地平的黑洞。已经计算了黑洞的电荷,质量和其他热力学量,并且已经证明它们满足了热力学第一法的标准形式。通过使用典型集合方法研究了黑洞局部稳定性。注意到黑洞热容量达到一型和类型 - 两个相变和局部稳定的黑洞。通过使用热力学几何形状,并注意到HEPM提出的热力学度量的发散点,已经证明该方法的结果与规范合奏方法的结果一致。通过使用Grand Canonical集合方法以及关于黑洞的Gibbs自由能研究,已经研究了全局稳定性和Hawking-Page阶段转换点。通过计算Gibbs自由能量,我们表征了地平线半径的范围,其中黑洞保持全球稳定或更喜欢辐射相。

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