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首页> 外文期刊>Physical Review, A >Detection of Bell correlations at finite temperature from matter-wave interference fringes
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Detection of Bell correlations at finite temperature from matter-wave interference fringes

机译:物质波干涉条纹有限温度下的钟形相关性检测

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摘要

We show that matter-wave interference fringes formed by two overlapping atomic clouds can yield information about the nonlocal Bell correlations. To this end, we consider a simple atomic interferometer, where the clouds are released from the double-well potential and the relative phase is estimated from the density fit to this interference pattern. The Bell correlations can be deduced from the sensitivity of the phase obtained in this way. We examine the relation between these two quantities for a wide range of ground states of the double-well, scanning through the attractive and the repulsive interactions. The presented analysis includes the effects of finite temperature, when excited states are thermally occupied. We also consider the impact of the spatial resolution of the single-atom detectors, the fluctuations of the energy mismatch between the wells, and the atom-number fluctuations. These results establish a link between the fundamental (nonlocality) and the application-oriented (quantum metrology) aspects of entanglement.
机译:我们表明,由两个重叠原子云形成的物质波干涉条纹可以产生关于非局部响铃相关的信息。为此,我们考虑一个简单的原子干涉仪,其中云从双阱电位释放,并且从密度拟合到这种干涉图案来估计相对相位。可以从以这种方式获得的相的敏感度推导出响铃相关性。我们检查这两种数量之间的关系,用于双孔的各种地面,扫描通过吸引力和排斥相互作用。当兴奋状态被热占时,所提出的分析包括有限温度的影响。我们还考虑了单原子探测器的空间分辨率的影响,井之间的能量失配的波动,以及原子数波动。这些结果建立了基本(非局部)与纠缠(量子计量)的纠缠之间的联系。

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