Holographic probes of collapsing black holes
arXiv:1312.6887 · doi:10.1007/JHEP03(2014)097
Abstract
We continue the programme of exploring the means of holographically decoding the geometry of spacetime inside a black hole using the gauge/gravity correspondence. To this end, we study the behaviour of certain extremal surfaces (focusing on those relevant for equal-time correlators and entanglement entropy in the dual CFT) in a dynamically evolving asymptotically AdS spacetime, specifically examining how deep such probes reach. To highlight the novel effects of putting the system far out of equilibrium and at finite volume, we consider spherically symmetric Vaidya-AdS, describing black hole formation by gravitational collapse of a null shell, which provides a convenient toy model of a quantum quench in the field theory. Extremal surfaces anchored on the boundary exhibit rather rich behaviour, whose features depend on dimension of both the spacetime and the surface, as well as on the anchoring region. The main common feature is that they reach inside the horizon even in the post-collapse part of the geometry. In 3-dimensional spacetime, we find that for sub-AdS-sized black holes, the entire spacetime is accessible by the restricted class of geodesics whereas in larger black holes a small region near the imploding shell cannot be reached by any boundary-anchored geodesic. In higher dimensions, the deepest reach is attained by geodesics which (despite being asymmetric) connect equal time and antipodal boundary points soon after the collapse; these can attain spacetime regions of arbitrarily high curvature and simultaneously have smallest length. Higher-dimensional surfaces can penetrate the horizon while anchored on the boundary at arbitrarily late times, but are bounded away from the singularity. We also study the details of length or area growth during thermalization. While the area of extremal surfaces increases monotonically, geodesic length is neither monotonic nor continuous.
44 pages + appendices, 21 figures; v2: references added, improved Discussion; v3: minor typos corrected, matches the published version
References in corpus (15)
- Holography from Conformal Field Theory
- Writing CFT correlation functions as AdS scattering amplitudes
- Thermalization of Strongly Coupled Field Theories
- Holographic Evolution of Entanglement Entropy
- Entanglement growth during thermalization in holographic systems
- Evolution of Holographic Entanglement Entropy after Thermal and Electromagnetic Quenches
- Constructing local bulk observables in interacting AdS/CFT
- A holographic view on physics out of equilibrium
- Measuring Black Hole Formations by Entanglement Entropy via Coarse-Graining
- Dynamics of holographic thermalization
- Extracting the bulk metric from boundary information in asymptotically AdS spacetimes
- Entanglement and Correlations near Extremality: CFTs dual to Reissner-Nordström AdS
- Extracting Data from Behind Horizons with the AdS/CFT Correspondence
- Holographic description of asymptotically AdS_2 collapse geometries
- Holographic entanglement and causal information in coherent states
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- Linear response of entanglement entropy from holography
- Time Evolution of Entanglement Entropy in Quenched Holographic Superconductors
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- Inside Out: Meet The Operators Inside The Horizon
- Thermalization after holographic bilocal quench
- Scanning Tunneling Macroscopy, Black Holes, and AdS/CFT Bulk Locality
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- Subsystem complexity after a global quantum quench
- Driven Holographic CFTs
- Holographic second laws of black hole thermodynamics
- Superluminal chaos after a quantum quench
- Covariant Constraints on Hole-ography
- The Boundary Dual of Bulk Local Operators
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- Bulk geometry from entanglement entropy of CFT
- Time-evolution of holographic entanglement entropy and metric perturbations
- Role of nonlocal probes of thermalization for a strongly interacting non-Abelian plasma
- Classical Spacetimes as Amplified Information in Holographic Quantum Theories
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