Quantumness near the Schwarzschild black hole based on W-state

Fuente: arXiv
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Autori principali: Mi, Guang-Wei, Huang, Xiaofen, Fei, Shao-Ming, Zhang, Tinggui
Natura: Preprint
Pubblicazione: 2025
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author Mi, Guang-Wei
Huang, Xiaofen
Fei, Shao-Ming
Zhang, Tinggui
author_facet Mi, Guang-Wei
Huang, Xiaofen
Fei, Shao-Ming
Zhang, Tinggui
contents We investigate certain quantumness in the vicinity of the Schwarzschild black hole by utilizing the W state. We explore the influence of the Hawking effect on the l_1-norm of quantum coherence, the first-order coherence (FOC), the concurrence-fill (CF) and the global concurrence (GC) in Schwarzschild black hole, for systems with one, two and three physically accessible modes. We conclude that the Hawking effect of the black hole not only disrupts but also enhance the quantum entanglement, while destroying the quantum coherence for systems with three physically accessible modes. For systems with one or two physically accessible modes, the Hawking effect exerts a positive influence on quantum coherence and quantum entanglement. Moreover, we study the influence of both the Hawking effect and environmental noise (AD channels) on l_1-norm of quantum coherence, FOC, CF and GC. It is demonstrated that for systems with three physically accessible modes, the Hawking effect of the black hole disrupts quantum coherence but exerts a positive influence on quantum entanglement under the AD channels.
format Preprint
id arxiv_https___arxiv_org_abs_2510_13666
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Quantumness near the Schwarzschild black hole based on W-state
Mi, Guang-Wei
Huang, Xiaofen
Fei, Shao-Ming
Zhang, Tinggui
Quantum Physics
General Relativity and Quantum Cosmology
We investigate certain quantumness in the vicinity of the Schwarzschild black hole by utilizing the W state. We explore the influence of the Hawking effect on the l_1-norm of quantum coherence, the first-order coherence (FOC), the concurrence-fill (CF) and the global concurrence (GC) in Schwarzschild black hole, for systems with one, two and three physically accessible modes. We conclude that the Hawking effect of the black hole not only disrupts but also enhance the quantum entanglement, while destroying the quantum coherence for systems with three physically accessible modes. For systems with one or two physically accessible modes, the Hawking effect exerts a positive influence on quantum coherence and quantum entanglement. Moreover, we study the influence of both the Hawking effect and environmental noise (AD channels) on l_1-norm of quantum coherence, FOC, CF and GC. It is demonstrated that for systems with three physically accessible modes, the Hawking effect of the black hole disrupts quantum coherence but exerts a positive influence on quantum entanglement under the AD channels.
title Quantumness near the Schwarzschild black hole based on W-state
topic Quantum Physics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2510.13666