Publication | Open Access
Holographic Phase Transition Probed by Nonlocal Observables
52
Citations
39
References
2016
Year
HolographyEngineeringHolographic MethodDigital HolographyStatistical Field TheoryThermal EntropyQuantum Field Theory In Curved SpacetimeQuantum EntanglementQuantum SciencePhysicsQuantum Field TheoryConformal Field TheoryPhase RetrievalHawking-page Phase TransitionBlack Hole DynamicBlack HoleEntropyNatural SciencesApplied PhysicsNonlocal Observables
From the viewpoint of holography, the phase structure of a 5-dimensional Reissner-Nordström-AdS black hole is probed by the two-point correlation function, Wilson loop, and entanglement entropy. As the case of thermal entropy, we find for all the probes that the black hole undergoes a Hawking-Page phase transition, a first-order phase transition, and a second-order phase transition successively before it reaches a stable phase. In addition, for these probes, we find that the equal area law for the first-order phase transition is valid always and the critical exponent of the heat capacity for the second-order phase transition coincides with that of the mean field theory regardless of the size of the boundary region.
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