Holographic complexity in Vaidya spacetimes. Part I

Author:

Chapman Shira,Marrochio HugoORCID,Myers Robert C.

Abstract

Abstract We examine holographic complexity in time-dependent Vaidya spacetimes with both the complexity=volume (CV) and complexity=action (CA) proposals. We focus on the evolution of the holographic complexity for a thin shell of null fluid, which collapses into empty AdS space and forms a (one-sided) black hole. In order to apply the CA approach, we introduce an action principle for the null fluid which sources the Vaidya geometries, and we carefully examine the contribution of the null shell to the action. Further, we find that adding a particular counterterm on the null boundaries of the Wheeler-DeWitt patch is essential if the gravitational action is to properly describe the complexity of the boundary state. For both the CV proposal and the CA proposal (with the extra boundary counterterm), the late time limit of the growth rate of the holographic complexity for the one-sided black hole is precisely the same as that found for an eternal black hole.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference99 articles.

1. J.D. Bekenstein, Black holes and the second law, Lett. Nuovo Cim. 4 (1972) 737 [INSPIRE].

2. J.D. Bekenstein, Black holes and entropy, Phys. Rev. D 7 (1973) 2333 [INSPIRE].

3. R.D. Sorkin, 1983 paper on entanglement entropy: “On the Entropy of the Vacuum outside a Horizon”, in Tenth International Conference on General Relativity and Gravitation, Padova, 4-9 July 1983, Contributed Papers, vol. II, pp. 734-736 [arXiv:1402.3589] [INSPIRE].

4. T. Jacobson, Thermodynamics of space-time: The Einstein equation of state, Phys. Rev. Lett. 75 (1995) 1260 [gr-qc/9504004] [INSPIRE].

5. M. Van Raamsdonk, Comments on quantum gravity and entanglement, arXiv:0907.2939 [INSPIRE].

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