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Entanglement entropy in FRW backgrounds

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arxiv 2105.12614 v1 pith:4UDKSLU6 submitted 2021-05-26 hep-th

classification hep-th
keywords entanglemententropybackgrounddimensionsnonzerovariousagreementallowing
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We use holography in order to study the entanglement entropy for a spherical entangling surface in a FRW background with an arbitrary time dependence of the scale factor. The calculation is done in various dimensions, allowing for nonzero spatial curvature. The entanglement entropy of a CFT at nonzero temperature in this background is also considered. Our approach is based on coordinate transformations that relate the extremization problem to the one for a static background, with a careful determination of the UV cutoff. We demonstrate the agreement with the expected form of the entanglement entropy and with various known results in specific cases. In four dimensions, apart from the cutoff-dependent terms, we compute and discuss the finite term related to the expansion rate.

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  1. Entanglement Entropy and Complexity of Multicomponent Universe from Holography

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    For two-component FLRW universes built from an AdS black brane plus p-brane gas, holographic entanglement entropy scales as tau early and as tau^{4/3} (dark matter) or tau^2 (exotic matter) late, while volume complexi...

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