Time-evolution of holographic entanglement entropy and metric perturbations
arXiv:1512.02816 · doi:10.3938/jkps.69.623
Abstract
We study the holographic entanglement entropy under small deformations of AdS, including time-dependence. It is found through perturbative analysis that the divergent terms are not affected and the change appears only in the finite terms. We also consider the entanglement thermodynamic first law, and calculate the entanglement temperature and confirm that it is inversely proportional to the size of the entangling region.
18 pages, 4 figures; v2. minor revision and refs added
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- Holographic entanglement entropies for Schwarzschild and Reisner-Nordström black holes in asymptotically Minkowski spacetimes
- Generalized geodesic deviation equations and an entanglement first law for rotating BTZ black holes
- Noncommutative corrections to the minimal surface areas of the pure AdS spacetime and Schwarzschild-AdS black hole