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Decoherence by spontaneous emission: A single-atom analog of superradiance

机译:自发排放的干式脱落:超长的单个原子模拟

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We show that the decoherence of the atomic center-of-mass induced by spontaneous emission involves interferences corresponding to a single-atom analog of superradiance. We use a decomposition of the stationary decoherence rate as a sum of local and nonlocal contributions obtained to second order in the interaction by the influence functional method. These terms are respectively related to the strength of the coupling between system and environment, and to the quality of the information about the system leaking into the environment. While the local contribution always yields a positive decoherence rate, the nonlocal one may lead to recoherence when only partial information about the system is obtained from the disturbed environment. The nonlocal contribution contains interferences between different quantum amplitudes leading to oscillations of the decoherence rate reminiscent of superradiance. These concepts, illustrated here in the framework of atom interferometry within a trap, may be applied to a variety of quantum systems.
机译:我们表明,由自发发射引起的原子中心的质量的退相干涉及对应于超辐射的单原子模拟干扰。我们使用固定的退相干速率的分解作为在由影响功能方法的相互作用获得的二阶局部和非局部贡献的总和。这些条款分别涉及耦合系统与环境之间,以及有关系统泄漏到环境中的信息质量的强度。虽然当地的贡献总是产生积极的退相干率,外地一个可能导致当从被干扰的环境中获得大约只有系统部分信息recoherence。在外地的贡献包含不同的量子振幅导致的退相干率让人想起超辐射的振荡之间的干扰。这些概念,在原子干涉的阱内的框架在这​​里所示,可以应用于各种量子系统。

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