Causal shadow and non-local modular flow: from degeneracy to perturbative genesis by correlation

被引:3
作者
Chen, Liangyu [1 ]
Wang, Huajia [1 ]
机构
[1] Univ Chinese Acad Sci, Kavli Inst Theoret Sci, Zhongguancun East Rd 80, Beijing 100190, Peoples R China
关键词
AdS-CFT Correspondence; 1/N Expansion;
D O I
10.1007/JHEP02(2023)052
中图分类号
O412 [相对论、场论]; O572.2 [粒子物理学];
学科分类号
摘要
Causal shadows are bulk space-time regions between the entanglement wedges and the causal wedges, their existence encodes deep aspects of the entanglement wedge reconstruction in the context of subregion duality in AdS/CFT. In this paper, we study the perturbation theory of the causal shadows and their relation to the properties of the associated modular flows. We first revisit the cases of degenerate causal shadows based on known examples, and discuss the origin for their degeneracy via the local nature of the modular flow. We then focus on the perturbative case in which the CFT subregion consists of two spheres separated by a large distance L >> R-1,R-2. The RT surfaces still agree with the causal horizons, giving a degenerate causal shadow classically. We compute the corrections to the quantum extremal surfaces (Q.E.S) from the bulk mutual information, which then give rise to a non-degenerate causal shadow at order G(N). We end by discussing the causal shadow perturbation theory more generally, in particular we explore the possibility of extracting the positivity conditions characterizing perturbative causal shadows in the boundary CFTs.
引用
收藏
页数:43
相关论文
共 47 条
[31]  
Hawking SW., 1973, LARGE SCALE STRUCTUR
[32]   Causality & holographic entanglement entropy [J].
Headrick, Matthew ;
Hubeny, Veronika E. ;
Lawrence, Albion ;
Rangamani, Mukund .
JOURNAL OF HIGH ENERGY PHYSICS, 2014, (12)
[33]   Causal holographic information [J].
Hubeny, Veronika E. ;
Rangamani, Mukund .
JOURNAL OF HIGH ENERGY PHYSICS, 2012, (06)
[34]   A covariant holographic entanglement entropy proposal [J].
Hubeny, Veronika E. ;
Rangamani, Mukund ;
Takayanagi, Tadashi .
JOURNAL OF HIGH ENERGY PHYSICS, 2007, (07)
[35]   Relative entropy equals bulk relative entropy [J].
Jafferis, Daniel L. ;
Lewkowycz, Aitor ;
Maldacena, Juan ;
Suh, S. Josephine .
JOURNAL OF HIGH ENERGY PHYSICS, 2016, (06)
[36]  
Kusuki Y, 2020, Arxiv, DOI arXiv:1912.08423
[37]   Seeing the entanglement wedge [J].
Levine, Adam ;
Shahbazi-Moghaddam, Arvin ;
Soni, Ronak M. .
JOURNAL OF HIGH ENERGY PHYSICS, 2021, 2021 (06)
[38]   The large-N limit of superconformal field theories and supergravity [J].
Maldacena, J .
INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 1999, 38 (04) :1113-1133
[39]   Entanglement entropy across a deformed sphere [J].
Mezei, Mark .
PHYSICAL REVIEW D, 2015, 91 (04)
[40]   Entanglement entropy for relevant and geometric perturbations [J].
Rosenhaus, Vladimir ;
Smolkin, Michael .
JOURNAL OF HIGH ENERGY PHYSICS, 2015, (02)