Time evolution of entanglement negativity from black hole interiors

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Abstract

We investigate the time evolution of entanglement negativity following a global quench for mixed state configurations of two disjoint and adjacent intervals in a (1 + 1)-dimensional conformal field theory (CFT1+1) dual to the eternal black hole sliced in half by an end of the world brane, through the AdS3/CFT2 correspondence. To this end we obtain the time evolution of the holographic entanglement negativity for such mixed states from a dual bulk eternal black hole geometry and elucidate the relevant geodesic structures. The holographic entanglement negativity for such mixed states, following a global quench is described by half of the results for the eternal black hole. Significantly our results exactly match with the corresponding CFT1+1 computations.

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Malvimat, V., Mondal, S., & Sengupta, G. (2019). Time evolution of entanglement negativity from black hole interiors. Journal of High Energy Physics, 2019(5). https://doi.org/10.1007/JHEP05(2019)183

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