4.4 Article

Entanglement entropy in flat holography

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 7, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP07(2017)142

关键词

Black Holes; Field Theories in Lower Dimensions; Gauge-gravity correspondence; Models of Quantum Gravity

资金

  1. Tsinghua University
  2. National Thousand-Young-Talents Program of China
  3. Research Grants Council (RGC) of Hong Kong [HKUST4/CRF/13G, ECS 26300316]

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BMS symmetry, which is the asymptotic symmetry at null in finity of flat spacetime, is an important input for flat holography. In this paper, we give a holographic calculation of entanglement entropy and Renyi entropy in three dimensional Einstein gravity and Topologically Massive Gravity. The geometric picture for the entanglement entropy is the length of a spacelike geodesic which is connected to the interval at null in finity by two null geodesics. The spacelike geodesic is the fixed points of replica symmetry, and the null geodesics are along the modular flow. Our strategy is to first reformulate the Rindler method for calculating entanglement entropy in a general setup, and apply it for BMS invariant field theories, and finally extend the calculation to the bulk.

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