Universality of quantum information in chaotic CFTs

被引:0
作者
Nima Lashkari
Anatoly Dymarsky
Hong Liu
机构
[1] Massachusetts Institute of Technology,Center for Theoretical Physics
[2] University of Kentucky,Department of Physics and Astronomy
[3] Skolkovo Institute of Science and Technology,undefined
[4] Skolkovo Innovation Center,undefined
来源
Journal of High Energy Physics | / 2018卷
关键词
Conformal Field Theory; Integrable Hierarchies; Thermal Field Theory;
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学科分类号
摘要
We study the Eigenstate Thermalization Hypothesis (ETH) in chaotic conformal field theories (CFTs) of arbitrary dimensions. Assuming local ETH, we compute the reduced density matrix of a ball-shaped subsystem of finite size in the infinite volume limit when the full system is an energy eigenstate. This reduced density matrix is close in trace distance to a density matrix, to which we refer as the ETH density matrix, that is independent of all the details of an eigenstate except its energy and charges under global symmetries. In two dimensions, the ETH density matrix is universal for all theories with the same value of central charge. We argue that the ETH density matrix is close in trace distance to the reduced density matrix of the (micro)canonical ensemble. We support the argument in higher dimensions by comparing the Von Neumann entropy of the ETH density matrix with the entropy of a black hole in holographic systems in the low temperature limit. Finally, we generalize our analysis to the coherent states with energy density that varies slowly in space, and show that locally such states are well described by the ETH density matrix.
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