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      An Effective Field Theory of Quantum Mechanical Black Hole Horizons

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          Abstract

          We develop an effective theory which describes black holes with quantum mechanical horizons that is valid at scales long compared to the Schwarzschild radius but short compared to the lifetime of the black hole. Our formalism allows one to calculate the quantum mechanical effects in scattering processes involving black hole asymptotic states. We point out that the EFT Wightman functions which describe Hawking radiation in the Unruh vacuum are not Planck suppressed and are actually {\it enhanced} relative to those in the Boulware vacuum, for which such radiation is absent. We elaborate on this point showing how the non-Planck suppressed effects of Hawking radiation cancel in classical observables.

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          Author and article information

          Journal
          31 December 2019
          Article
          1912.13435
          5d9ddbbd-ac99-4c37-a353-38f2b66abab1

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          20 pages LaTeX, 5 figures
          hep-th gr-qc hep-ph

          General relativity & Quantum cosmology,High energy & Particle physics
          General relativity & Quantum cosmology, High energy & Particle physics

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