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Submerging islands through thermalization

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arxiv 2107.14746 v2 pith:U4I54NCZ submitted 2021-07-30 hep-th gr-qcquant-ph

classification hep-thgr-qcquant-ph
keywords blackislandsreservoiramounteternalholesradiationscenario
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We illustrate scenarios in which Hawking radiation collected in finite regions of a reservoir provides temporary access to the interior of black holes through transient entanglement "islands". Whether these islands appear and the amount of time for which they dominate - sometimes giving way to a thermalization transition - is controlled by the amount of radiation we probe. In the first scenario, two reservoirs are coupled to an eternal black hole. The second scenario involves two holographic quantum gravitating systems at different temperatures interacting through a Rindler-like reservoir, which acts as a heat engine maintaining thermal equilibrium. The latter situation, which has an intricate phase structure, describes two eternal black holes radiating into each other through a shared reservoir.

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  1. Entanglement Revivals and Scrambling for Evaporating Black Holes

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    Increasing black hole scrambling time in JT and RST evaporating geometries suppresses and eliminates late-time entanglement revivals in 2d CFT mutual information for disjoint intervals, interpolating between quasipart...

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