二维施瓦兹理论中的模块平均和韦尔反常现象

IF 2.5 3区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS Nuclear Physics B Pub Date : 2024-07-08 DOI:10.1016/j.nuclphysb.2024.116620
Xing Huang , Chen-Te Ma
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引用次数: 0

摘要

在 AdS3 背景下的爱因斯坦引力的轨迹表述会导致边界理论打破模块对称性并失去协变形式。我们研究了圆柱流形和环流形的韦尔反常现象。当从圆柱体变换到球体时,发散项与柳维尔理论相同。转子上的一般韦尔变换也再现了柳维尔理论。韦尔变换引入了一个额外的边界项来重现柳维尔理论,从而可以使用 CFT 技术来分析该理论。这个边界理论中的环分函数是一环精确的,而且可以得到不相交的两区间雷尼-2 互信息的解析解。我们还讨论了两区间分离长度的一阶相变,这种相变发生在经典层面,但被边界理论中的模组平均所捕捉到的非微扰效应抹平了。
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Modular average and Weyl anomaly in two-dimensional Schwarzian theory

The gauge formulation of Einstein gravity in AdS3 background leads to a boundary theory that breaks modular symmetry and loses the covariant form. We examine the Weyl anomaly for the cylinder and torus manifolds. The divergent term is the same as the Liouville theory when transforming from the cylinder to the sphere. The general Weyl transformation on the torus also reproduces the Liouville theory. The Weyl transformation introduces an additional boundary term for reproducing the Liouville theory, which allows the use of CFT techniques to analyze the theory. The torus partition function in this boundary theory is one-loop exact, and an analytical solution to disjoint two-interval Rényi-2 mutual information can be obtained. We also discuss a first-order phase transition for the separation length of two intervals, which occurs at the classical level but is smoothed out by non-perturbative effects captured by averaging over a modular group in the boundary theory.

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来源期刊
Nuclear Physics B
Nuclear Physics B 物理-物理:粒子与场物理
CiteScore
5.50
自引率
7.10%
发文量
302
审稿时长
1 months
期刊介绍: Nuclear Physics B focuses on the domain of high energy physics, quantum field theory, statistical systems, and mathematical physics, and includes four main sections: high energy physics - phenomenology, high energy physics - theory, high energy physics - experiment, and quantum field theory, statistical systems, and mathematical physics. The emphasis is on original research papers (Frontiers Articles or Full Length Articles), but Review Articles are also welcome.
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