Hajian Kamal, Tekin Bayram
Institute of Physics, University of Oldenburg, P.O. Box 2503, D-26111 Oldenburg, Germany.
Department of Physics, Middle East Technical University, 06800 Ankara, Turkey.
Phys Rev Lett. 2024 May 10;132(19):191401. doi: 10.1103/PhysRevLett.132.191401.
In a generic theory of gravity coupled to matter fields, the Smarr formula for black holes does not work properly if the contributions of the coupling constants defining the theory are not incorporated. However, these couplings, such as the cosmological constant or the dimensionful parameters that appear in the Lagrangian, are fixed parameters defining the theory, and they cannot be varied. Here, we present a robust method, applicable to any covariant Lagrangian, that upgrades the role of the couplings from being constants in the theory to being free parameters of the solutions. To this end, for each one of the couplings in a theory, a pair of auxiliary scalar and gauge fields is introduced. The couplings are shown to be conserved charges of the global part of the implemented gauge symmetry. Besides, their conjugate chemical potentials are defined as the electric potential of the corresponding gauge fields on the black hole horizon. Using this method, we systematically extend the first law and the Smarr formula by coupling conserved charges and their conjugate potentials. The thermodynamics of a black hole solution in a quadratic gravity theory is given as an example.
在一个与物质场耦合的广义引力理论中,如果定义该理论的耦合常数的贡献未被纳入,黑洞的斯马尔公式就无法正常适用。然而,这些耦合,比如宇宙学常数或拉格朗日量中出现的有量纲参数,是定义该理论的固定参数,不能改变。在此,我们提出一种适用于任何协变拉格朗日量的稳健方法,该方法将耦合的角色从理论中的常数提升为解的自由参数。为此,对于理论中的每一个耦合,引入一对辅助标量场和规范场。结果表明,这些耦合是所实现规范对称性全局部分的守恒荷。此外,它们的共轭化学势被定义为相应规范场在黑洞视界上的电势。使用这种方法,我们通过耦合守恒荷及其共轭势系统地扩展了第一定律和斯马尔公式。作为例子给出了二次引力理论中黑洞解的热力学。