Holographic entanglement entropy and gravitational anomalies
Holographic entanglement entropy and gravitational anomalies
We study entanglement entropy in two-dimensional conformal field theories with a gravitational anomaly. In theories with gravity duals, this anomaly is holographically represented by a gravitational Chern-Simons term in the bulk action. We show that the anomaly broadens the Ryu-Takayanagi minimal worldline into a ribbon, and that the anomalous contribution to the CFT entanglement entropy is given by the twist in this ribbon. The entanglement functional may also be interpreted as the worldline action for a spinning particle -- that is, an anyon -- in three-dimensional curved spacetime. We demonstrate that the minimization of this action results in the Mathisson-Papapetrou-Dixon equations of motion for a spinning particle in three dimensions. We work out several simple examples and demonstrate agreement with CFT calculations.
Eric Perlmutter、Stephane Detournay、Alejandra Castro、Nabil Iqbal
物理学
Eric Perlmutter,Stephane Detournay,Alejandra Castro,Nabil Iqbal.Holographic entanglement entropy and gravitational anomalies[EB/OL].(2014-05-12)[2025-06-08].https://arxiv.org/abs/1405.2792.点此复制
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