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Study on energy transfer induced by collisions between rubidium and cesium

机译:id与铯碰撞引起的能量转移研究

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As two main atomic alkalis, rubidium (Rb) and cesium (Cs) have the similar energy-level structures. The energy transfer caused by collisions between rubidium and cesium atoms is a crucial factor for a vapor system. When such a vapor is irradiated with one component of rubidium resonance doublet, energy transfer will be induced by inelastic collisions between the excited rubidium atoms and the unexcited rubidium atoms, and between the excited rubidium atoms and the unexcited cesium atoms as well. It is noteworthy that the energy transfer between atomic rubidium and cesium is performed as cross relaxation. In this study, we theoretically investigate the effects of cross relaxations between the upper-state levels of atomic rubidium and cesium on the population distribution of the gas media. It has been demonstrated that the intensity of cross relaxations in this system is too weak to greatly affect the population distributions of atomic rubidium and cesium under the different temperatures. The conclusion might be helpful to better understand the physical features of alkalis.
机译:作为两种主要的原子碱,rub(Rb)和铯(Cs)具有相似的能级结构。 rub和铯原子之间的碰撞引起的能量转移是蒸气系统的关键因素。当这样的蒸气被of共振双峰的一种成分照射时,在激发的atoms原子与未激发的atoms原子之间,以及在激发的atoms原子与未激发的collision原子之间也发生无弹性的碰撞,从而引起能量转移。值得注意的是,原子cross和铯之间的能量转移以交叉弛豫的方式进行。在这项研究中,我们从理论上研究了原子态id和铯的高能级之间的交叉弛豫对气体介质总体分布的影响。已经证明,在不同温度下,该体系的交叉弛豫强度太弱,以至于不能极大地影响原子rub和铯的种群分布。结论可能有助于更好地了解碱的物理特征。

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