Entanglement and entropy uncertainty in black hole quantum atmosphere
arXiv:2506.10631 · doi:10.1016/j.physletb.2025.139648
Abstract
In this work, we investigate the properties of Hawking radiation induced by the quantum atmosphere beyond the event horizon, by considering two detectors in Schwarzschild spacetime with the parameterized Hartle-Hawking temperature. \textcolor{black}{We explicitly study the dynamics of quantum entanglement and found that its characteristics are closely correlated with Hawking quantum radiation beyond the event horizon. Namely, its minimal value corresponds to the peak of Hawking radiation.} By virtue of the mutual information, we demonstrate the complementary relationship of the information distribution in the black hole. In addition, we detailedly discuss the influence of distance from the center of black hole to particle, radius of event horizon and Hartle-Hawking constant on the entropy uncertainty in the current scenario, and the results interestingly show that there exists an opposite correlation between the entanglement and the entropy uncertainty. It is believed that our observation could provide a new perspective for understanding the black hole information paradox and black hole thermodynamics.
7 pages, 4 figures, comments are welcomed. Accepted by Physics Letters B
References in corpus (14)
- Quantum cryptography: Public key distribution and coin tossing
- Conjectured Strong Complementary Information Tradeoff
- Continuous-variable quantum cryptography is secure against non-gaussian attacks
- Genuinely Multipartite Concurrence of N-qubit X-matrices
- True precision limits in quantum metrology
- Improved tripartite uncertainty relation with quantum memory
- Fine-grained lower limit of entropic uncertainty in the presence of quantum memory
- Optimized entropic uncertainty relations for multiple measurements
- Environment-mediated entropic uncertainty in charging quantum batteries
- Entropic uncertainty relations in Schwarzschild space-time
- Hawking radiation and the Stefan-Boltzmann law: The effective radius of the black-hole quantum atmosphere
- The Quantum Atmosphere of Reissner-Nordström Black Holes
- Test of quantum atmosphere in the dimensionally reduced Schwarzschild black hole
- Phase transitions in charged topological black holes dressed with a scalar hair