paper

Quantum Populations near Black-Hole Singularities

arXiv:1710.07645 · doi:10.1103/PhysRevD.104.105010

Abstract

Schwarzschild black-hole interiors border on space-like singularities representing classical information leaks. We show that local quantum physics is decoupled from these leaks due to dynamically generated boundaries, called Zeno borders. Beyond Zeno borders black-hole interiors become asymptotically silent, and quantum fields evolve freely towards the geodesic singularity with vanishing probability measure for populating the geodesic boundary. Thus Zeno borders represent a probabilistic completion of Schwarzschild black holes within the semiclassical framework.

Accepted by Physical Review D; 5 pages, 2 figures, more pedagogical presentation of our unchanged results including an introduction to Zeno regions

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