Quantum coherence of a circularly accelerated atom in a spacetime with a reflecting boundary

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作者
Wanhe Zhang
Xiaobao Liu
Tingli Yang
机构
[1] Liupanshui Normal University,Department of Innovation and Entrepreneurship
[2] Liupanshui Normal University,Department of Physics and Electrical Engineering
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Scientific Reports | / 12卷
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摘要
We investigate, in the paradigm of open quantum systems, the dynamics of quantum coherence of a circularly accelerated atom coupled to a bath of vacuum fluctuating massless scalar field in a spacetime with a reflecting boundary. The master equation that governs the system evolution is derived. Our results show that in the case without a boundary, the vacuum fluctuations and centripetal acceleration will always cause the quantum coherence to decrease. However, with the presence of a boundary, the quantum fluctuations of the scalar field are modified, which makes that quantum coherence could be enhanced as compared to that in the case without a boundary. Particularly, when the atom is very close to the boundary, although the atom still interacts with the environment, it behaves as if it were a closed system and quantum coherence can be shielded from the effect of the vacuum fluctuating scalar field.
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