Real-time gravitational replicas: low dimensional examples

Author:

Colin-Ellerin Sean,Dong Xi,Marolf Donald,Rangamani Mukund,Wang Zhencheng

Abstract

Abstract We continue the study of real-time replica wormholes initiated in [1]. Previously, we had discussed the general principles and had outlined a variational principle for obtaining stationary points of the real-time gravitational path integral. In the current work we present several explicit examples in low-dimensional gravitational theories where the dynamics is amenable to analytic computation. We demonstrate the computation of Rényi entropies in the cases of JT gravity and for holographic two-dimensional CFTs (using the dual gravitational dynamics). In particular, we explain how to obtain the large central charge result for subregions comprising of disjoint intervals directly from the real-time path integral.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference47 articles.

1. S. Colin-Ellerin, X. Dong, D. Marolf, M. Rangamani and Z. Wang, Real-time gravitational replicas: Formalism and a variational principle, JHEP 05 (2021) 117 [arXiv:2012.00828] [INSPIRE].

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4. K. Goto, T. Hartman and A. Tajdini, Replica wormholes for an evaporating 2D black hole, JHEP 04 (2021) 289 [arXiv:2011.09043] [INSPIRE].

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