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Measuring Black Hole Formations by Entanglement Entropy via Coarse-Graining

Published 20 Aug 2010 in hep-th, cond-mat.stat-mech, gr-qc, and quant-ph | (1008.3439v1)

Abstract: We argue that the entanglement entropy offers us a useful coarse-grained entropy in time-dependent AdS/CFT. We show that the total von-Neumann entropy remains vanishing even when a black hole is created in a gravity dual, being consistent with the fact that its corresponding CFT is described by a time-dependent pure state. We analytically calculate the time evolution of entanglement entropy for a free Dirac fermion on a circle following a quantum quench. This is interpreted as a toy holographic dual of black hole creations and annihilations. It is manifestly free from the black hole information problem.

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