论文标题
全息复杂性和热力学体积
Holographic Complexity and Thermodynamic Volume
论文作者
论文摘要
我们研究了用于旋转黑洞的全息复杂性猜想,发现了形成的复杂性与黑洞的热力学体积之间的关系。我们认为,在复杂性中,大型黑洞的形成的复杂性是热力学体积而不是熵等于一般而言的体积建议。我们的建议减少了涉及热力学体积和熵不是独立的设置中的熵的已知结果,但范围更大。假设热力学体积遵守猜想的不等式,我们确定地层的复杂性是由大型黑洞的熵从下面界定的。
We study the holographic complexity conjectures for rotating black holes, uncovering a relationship between the complexity of formation and the thermodynamic volume of the black hole. We suggest that it is the thermodynamic volume and not the entropy that controls the complexity of formation of large black holes in both the Complexity Equals Action and Complexity Equals Volume proposals in general. Our proposal reduces to known results involving the entropy in settings where the thermodynamic volume and entropy are not independent, but has broader scope. Assuming a conjectured inequality is obeyed by the thermodynamic volume, we establish that the complexity of formation is bounded from below by the entropy for large black holes.