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Black Hole Firewalls and Quantum Mechanics

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arxiv 2401.16890 v1 pith:X7ZRRQZD submitted 2024-01-30 gr-qc math-phmath.MPquant-ph

Black Hole Firewalls and Quantum Mechanics

classification gr-qc math-phmath.MPquant-ph
keywords blackfirewallsholetimeperiodstogetherveryalways
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Firewalls in black holes are easiest to understand by imposing time reversal invariance, together with a unitary evolution law. The best approach seems to be to split up the time span of a black hole into short periods, during which no firewalls can be detected by any observer. Then, gluing together subsequent time periods, firewalls seem to appear, but they can always be transformed away. At all times we need a Hilbert space of a finite dimension, as long as particles far separated from the black hole are ignored. Our conclusion contradicts other findings, particularly a recent paper by Strauss and Whiting. Indeed, the firewall transformation removes the entanglement between very early and very late in- and out-particles, in a far-from-trivial way.

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