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首页> 外文期刊>Annals of Physics >Protecting quantum coherence of two-level atoms from vacuum fluctuations of electromagnetic field
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Protecting quantum coherence of two-level atoms from vacuum fluctuations of electromagnetic field

机译:保护两能级原子的量子相干免受电磁场的真空波动

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摘要

In the framework of open quantum systems, we study the dynamics of a static polarizable two-level atom interacting with a bath of fluctuating vacuum electromagnetic field and explore under which conditions the coherence of the open quantum system is unaffected by the environment. For both a single-qubit and two-qubit systems, we find that the quantum coherence cannot be protected from noise when the atom interacts with a non boundary electromagnetic field. However, with the presence of a boundary, the dynamical conditions for the insusceptible of quantum coherence are fulfilled only when the atom is close to the boundary and is transversely polarizable. Otherwise, the quantum coherence can only be protected in some degree in other polarizable direction. (C) 2016 Elsevier Inc. All rights reserved.
机译:在开放量子系统的框架中,我们研究了静态极化的两能级原子与波动的真空电磁场相互作用所产生的动力学,并探讨了开放量子系统的相干性在何种条件下不受环境的影响。对于单量子位和双量子位系统,我们发现当原子与无边界电磁场相互作用时,无法保护量子相干性免受噪声影响。但是,在存在边界的情况下,仅当原子靠近边界且可横向极化时,才能满足不发生量子相干的动力学条件。否则,只能在其他可极化方向上一定程度地保护量子相干性。 (C)2016 Elsevier Inc.保留所有权利。

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