磁光俘获中超冷铯分子的直接制备
old cesium molecules produced directly in a magneto optical trap
本文报告了在磁光阱中直接获得电子基态超冷铯分子的实验过程,分子由俘获激光作为缔合光,高信噪比的分子信号通过共振增强多光子电离技术进行探测。超冷铯分子产率可达4×104 s-1。实验测量了铯分子离子信号强度与俘获激光强度、电离激光能量间的时间特性关系。这些实验结果对产生超冷基电子态分子有指导意义。
We report on the observation of ultracold ground electric-state cesium molecules produced directly in a magneto-optical trap with a good signal-to-noise ratio. These molecules arise from the photoassociation of magneto-optical trap lasers and they are detected by resonantly enhanced multiphoton ionization technology. The production rate of ultracold cesium molecules is up to 4×104 s-1. We measure the characteristic time of the ground electric-state cesium molecules generated in the experiment and investigate the Cs2+ molecular ion intensity as a function of the trapping laser intensity and the ionization pulse laser energy. We conclude that the production of cold cesium molecules may be enhanced by using appropriate experimental parameters, which is useful for future experiments involving the production and trapping of ultracold ground electric-state molecules.
张洪山、姬中华、赵延霆
物理学
原子分子物理光缔合超冷分子多光子电离
atom-molecular physicsphotoassociationultracold moleculesmultiphoton ionizationkey
张洪山,姬中华,赵延霆.磁光俘获中超冷铯分子的直接制备[EB/OL].(2012-03-08)[2025-08-21].http://www.paper.edu.cn/releasepaper/content/201203-292.点此复制
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