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Producing cold and ultracold cersium(2) and cesium hydride molecules through photoassociation and reactions.

机译:通过光缔合和反应产生冷和超冷的铯(2)和氢化铯分子。

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摘要

Several different experiments involving the making of cold and ultracold molecules are performed and proposed. Ultracold cesium molecules are produced in a magneto-optical trap (MOT) by photoassociation near the 6P j, 7Pj, 9S 1/2, 6D3/2, 7D3/2 and doubly excited asymptotes. Perturbation effects related to resonant channel coupling were observed in photoassociation spectra below the 6 P1/2 asymptote. Such effects are used to illustrate a ground state ultracold molecule formation mechanism, which can also be formed in one step photoassociation to the double minimum 31S+m state. In addition, a new technique of making cold molecules of cesium hydride is proposed, using a cold hydrogen beam source and a cesium MOT. Due to reaction energetics, the formed CsH molecules should be in their lowest rovibrational states.
机译:进行并提出了涉及冷和超冷分子制备的几个不同的实验。通过在6P j,7Pj,9S 1 / 2、6D3 / 2、7D3 / 2附近和双激发渐近线附近进行光缔合,在磁光阱(MOT)中产生超冷铯分子。在低于6 P1 / 2渐近线的光缔合光谱中观察到与共振通道耦合相关的摄动效应。这些效应用于说明基态超冷分子的形成机理,该机理也可以一步一步光缔合形成至最低31S + m的两倍状态。另外,提出了一种使用冷氢束源和铯MOT制备氢化铯冷分子的新技术。由于反应能,所形成的CsH分子应处于最低振动状态。

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