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- W4385603000 abstract "The relevance of gravitational boundary degrees of freedom and their dynamics in gravity quantization and black hole information has been explored in a series of recent works. In this work we further progress by focusing keenly on the genuine gravitational boundary degrees of freedom as the origin of black hole entropy. Wald’s entropy formula is scrutinized, and the reason that Wald’s formula correctly captures the entropy of a black hole examined. Afterwards, limitations of Wald’s method are discussed; a coherent view of entropy based on boundary dynamics is presented. The discrepancy observed in the literature between holographic and Wald’s entropies is addressed. We generalize the entropy definition so as to handle a time-dependent black hole. Large gauge symmetry plays a pivotal role. Non-Dirichlet boundary conditions and gravitational analogues of Coleman-De Luccia bounce solutions are central in identifying the microstates and differentiating the origins of entropies associated with different classes of solutions. The result in the present work leads to a view that black hole entropy is entanglement entropy in a thermodynamic setup." @default.
- W4385603000 created "2023-08-05" @default.
- W4385603000 creator A5014059227 @default.
- W4385603000 date "2023-08-01" @default.
- W4385603000 modified "2023-10-17" @default.
- W4385603000 title "Black Hole Entropy from Non-dirichlet Sectors, and a Bounce Solution" @default.
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- W4385603000 doi "https://doi.org/10.1007/s10701-023-00719-5" @default.
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