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首页> 外文期刊>The European physical journal: Special topics >Interaction Enhanced Imaging of Rydberg P states Preparation and detection of Rydberg atoms for engineering long-range interactions
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Interaction Enhanced Imaging of Rydberg P states Preparation and detection of Rydberg atoms for engineering long-range interactions

机译:Rydberg P态的相互作用增强成像Rydberg原子的制备和检测,用于工程远程相互作用

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摘要

The Interaction Enhanced Imaging technique allows to detect the spatial distribution of strongly interacting impurities embedded within a gas of background atoms used as a contrast medium [1]. Here we present a detailed study of this technique, applied to detect Rydberg P states. We experimentally realize fast and efficient three-photon excitation of P states, optimized according to the results of a theoretical effective two-level model. Few Rydberg P-state atoms, prepared in a small cloud with dimensions comparable to the blockade radius, are detected with a good sensitivity by averaging over 50 shots. The main aspects of the technique are described with a hard-sphere model, finding good agreement with experimental data. This work paves the way to a non-destructive optical detection of single Rydberg atoms with high spatial and temporal resolution.
机译:相互作用增强成像技术允许检测嵌入在用作对比介质的背景原子气体中的强相互作用杂质的空间分布[1]。在这里,我们介绍了这项技术的详细研究,用于检测Rydberg P状态。我们通过实验实现了快速高效的P态三光子激发,并根据理论上有效的两能级模型的结果进行了优化。在平均大小超过50次的小云中制备的里德伯格P-态原子很少能以良好的灵敏度检测到,其尺寸可与封锁半径相媲美。用硬球模型描述了该技术的主要方面,发现与实验数据有很好的一致性。这项工作为以高时空分辨率对单个里德堡原子进行无损光学检测铺平了道路。

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