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- W1661532197 abstract "We study holographic entanglement entropy of non-local field theories both at extremality and finite temperature. The gravity duals, constructed in arXiv:1208.3469 [hep-th], are characterized by a parameter $w$. Both the zero temperature backgrounds and the finite temperature counterparts are exact solutions of Einstein-Maxwell-dilaton theory. For the extremal case we consider the examples with the entangling regions being a strip and a sphere. We find that the leading order behavior of the entanglement entropy always exhibits a volume law when the size of the entangling region is sufficiently small. We also clarify the condition under which the next-to-leading order result is universal. For the finite temperature case we obtain the analytic expressions both in the high temperature limit and in the low temperature limit. In the former case the leading order result approaches the thermal entropy, while the finite contribution to the entanglement entropy at extremality can be extracted by taking the zero temperature limit in the latter case. Moreover, we observe some peculiar properties of the holographic entanglement entropy when $w=1$." @default.
- W1661532197 created "2016-06-24" @default.
- W1661532197 creator A5073915970 @default.
- W1661532197 date "2014-06-09" @default.
- W1661532197 modified "2023-09-26" @default.
- W1661532197 title "Holographic entanglement entropy of nonlocal field theories" @default.
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- W1661532197 doi "https://doi.org/10.1103/physrevd.89.126005" @default.
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