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Quantum Circuit Model of Black Hole Evaporation

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arxiv 1807.07672 v2 pith:2ETJ5WFZ submitted 2018-07-20 gr-qc quant-ph

classification gr-qcquant-ph
keywords blackholeradiationentanglementhawkingmodelomegaquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We consider a quantum circuit model describing the evaporation process of black holes. We specifically examine the behavior of the multipartite entanglement represented by this model, and find that the entanglement structure depends on the black hole mass $M$ and the frequency of the Hawking radiation $\omega$. For sufficiently small values of $M\omega$, the black hole and the radiation system becomes a separable state after the Page time and a firewall-like structure appears. On the contrary, for larger values of $M\omega$, the entanglement between the black hole and the radiation is not lost. These behaviors imply that owing to the monogamy property of the multipartite entanglement, low frequency modes of the Hawking radiation destroys the quantum correlation between the black hole and the emitted Hawking radiation.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Quantum Superposition of Black Hole Evaporation Histories: Recovering Unitarity

    gr-qc 2025-07 conditional novelty 6.0 of 10

    A controlled-squeezing toy model of black hole evaporation with quantum back-reaction is unitary, and the initial black hole state can be recovered from the final radiation.

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