论文标题
来自单型的新兴黑洞热力学
Emergent Black Hole Thermodynamics from Monodromy
论文作者
论文摘要
我们认为,弯曲背景中量子场理论的运动方程式编码了新的基本黑洞热力学关系。我们定义了新的熵变化关系。这些“出现”通过单粒子捕获了田间激发产生的黑洞背景中的无限变化。这增加了新的热力学关系的可能性,其定义为涉及在每个黑洞地平线上定义的熵,温度和角速度的独立总和。我们为一般旋转黑洞的所有地平线熵变化的总和提供了明确的结果,这在四个和更高的维度都在渐近和渐近的反DE安静的时间内。表达式是通用的,在大多数情况下总计为零。我们还发现,这些热力学求和关系适用于涉及多电荷黑洞的理论。
We argue that the equations of motion of quantum field theories in curved backgrounds encode new fundamental black hole thermodynamic relations. We define new entropy variation relations. These `emerge' through the monodromies that capture the infinitesimal changes in the black hole background produced by the field excitations. This raises the possibility of new thermodynamic relations defined as independent sums involving entropies, temperatures and angular velocities defined at every black hole horizon. We present explicit results for the sum of all horizon entropy variations for general rotating black holes, both in asymptotically at and asymptotically anti-de Sitter spacetimes in four and higher dimensions. The expressions are universal, and in most cases add up to zero. We also find that these thermodynamic summation relations apply in theories involving multi-charge black holes.