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Resolution to the firewall paradox: The black hole information paradox and highly squeezed interior quantum fluctuations
Published 22 Jul 2016 in hep-th and gr-qc | (1607.06546v3)
Abstract: Almheiri, Marolf, Polchinski, and Sully argued that, for a consistent black hole evaporation process, the horizon of a sufficiently old black hole should be replaced by a "firewall" at which an infalling observer burns up, which obviously leads to the violation of the equivalence principle. We propose that once the infalling partner of an outgoing Hawking particle approaches a black hole singularity, it experiences decoherence and the loss of its entanglement with the outgoing Hawking particle. This implies we would no longer need firewalls to avoid the black hole information paradox.
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