论文标题
BCFT的纠缠熵在大中央电荷和黑洞内部
BCFT entanglement entropy at large central charge and the black hole interior
论文作者
论文摘要
在本说明中,我们考虑了使用欧几里得BCFT路径积分构建的状态下的边界共形场理论(BCFT)的空间子系统或CFT的纠缠和Renyi熵。全息计算表明,这些熵是描述子系统的时间或参数的函数的相变。这些来自RT表面拓扑的变化。在最近对黑洞物理学的应用中,已经看到了这种过渡是为了控制A(b)CFT区域的散装纠缠楔是否包括黑洞内部的一部分,并且在理解页面曲线的半经典起源以蒸发黑洞的半经典起源起着至关重要的作用。 在本文中,我们通过直接(b)CFT计算来重现这些全息结果。使用副本方法,熵与欧几里得BCFT中扭曲操作员的相关函数有关。这些相关函数可以在涉及中间批量或边界运算符的各种通道中扩展。在散装和边界运算符的光谱和OPE系数上的某些稀疏条件下,我们表明扭曲相关器在单个通道中由真空块主导,其相关通道取决于曲折的位置。这些通道之间的这些过渡导致熵的全息观察到的相变。
In this note, we consider entanglement and Renyi entropies for spatial subsystems of a boundary conformal field theory (BCFT) or of a CFT in a state constructed using a Euclidean BCFT path integral. Holographic calculations suggest that these entropies undergo phase transitions as a function of time or parameters describing the subsystem; these arise from a change in topology of the RT surface. In recent applications to black hole physics, such transitions have been seen to govern whether or not the bulk entanglement wedge of a (B)CFT region includes a portion of the black hole interior and have played a crucial role in understanding the semiclassical origin of the Page curve for evaporating black holes. In this paper, we reproduce these holographic results via direct (B)CFT calculations. Using the replica method, the entropies are related to correlation functions of twist operators in a Euclidean BCFT. These correlations functions can be expanded in various channels involving intermediate bulk or boundary operators. Under certain sparseness conditions on the spectrum and OPE coefficients of bulk and boundary operators, we show that the twist correlators are dominated by the vacuum block in a single channel, with the relevant channel depending on the position of the twists. These transitions between channels lead to the holographically observed phase transitions in entropies.