We explore the entanglement evolution of boundary intervals in eternal Janus black holes that can be embedded consistently into string theory in the low-energy limit. By studying the geodesics we show that there is a transition in the entanglement characteristic around the Page time, which manifests the unitarity of the evolution. We reproduce and reinterpret these bulk results from two different lower-dimensional perspectives: first as an interface CFT in the usual AdS/CFT correspondence and second as an effective gravity theory in one lower dimension coupled to a radiation background. In the limit where the number of interface degrees of freedom becomes large, we obtain an effective theory on appropriate branes that replace the deep interior region in the bulk, coined the shadow region. In this effective theory, we also identify the island of the radiation entanglement wedge and verify the newly proposed quantum extremization method. Our model clarifies that double holography with gravity in two higher dimensions can be realized in a concrete and consistent way and that the occurrence of islands is natural in one higher dimension. Furthermore, our model reveals that there can be a transitional behavior of the Page curve before the Page time, which is related to the emergence of new matter degrees of freedom on the branes.
机构:
Tuck Sch Business Dartmouth, Hanover, NH 03755 USA
CEPR, Washington, DC 20009 USA
NBER, Cambridge, MA 02138 USATuck Sch Business Dartmouth, Hanover, NH 03755 USA
Bernard, Andrew B.
Moxnes, Andreas
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CEPR, Washington, DC 20009 USA
Univ Oslo, Oslo, NorwayTuck Sch Business Dartmouth, Hanover, NH 03755 USA
Moxnes, Andreas
Ulltveit-Moe, Karen Helene
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CEPR, Washington, DC 20009 USA
Univ Oslo, Oslo, NorwayTuck Sch Business Dartmouth, Hanover, NH 03755 USA
机构:
Univ Ljubljana, Fac Civil & Geodet Engn, Jamova Cesta 2, SI-1000 Ljubljana, Slovenia
Inst Math Phys & Mech, Jadranska Ul 19, SI-1000 Ljubljana, SloveniaUniv Ljubljana, Fac Civil & Geodet Engn, Jamova Cesta 2, SI-1000 Ljubljana, Slovenia