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首页> 外文期刊>Applied Physics B: Lasers and Optics >Laser cooling of a potassium–argon gas mixture using collisional redistribution of radiation
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Laser cooling of a potassium–argon gas mixture using collisional redistribution of radiation

机译:使用辐射的碰撞重新分布对钾-氩气混合物进行激光冷却

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摘要

We study laser cooling of atomic gases by collisional redistribution, a technique applicable to ultradense atomic ensembles at a pressure of a few hundred bars. Frequent collisions of an optically active atom with a buffer gas shift atoms into resonance with a far red detuned laser beam, while spontaneous decay occurs close to the unperturbed resonance frequency. In such an excitation cycle, a kinetic energy of the order of the thermal energy k B T is extracted from the sample. Here we report of recent experiments investigating the cooling of a potassium–argon gas mixture, which compared to a rubidium–argon mixture investigated in earlier experiments has a smaller fine structure of the optically active alkali atoms. We observe a relative cooling of the potassium–argon gas mixture by 120 K.
机译:我们研究了通过碰撞重分布对原子气体进行激光冷却的技术,该技术适用于几百巴压力下的超致密原子团。光学活性原子与缓冲气体的频繁碰撞使原子与远红的失谐激光束发生共振,而自发衰减发生在接近不受干扰的共振频率处。在这样的激发循环中,从样品中提取热能k B T量级的动能。在这里,我们报告了最近的研究,研究了钾-氩气体混合物的冷却,与早期实验中研究的a-氩混合物相比,该混合物的旋光性碱原子的精细结构较小。我们观察到钾氩气体混合物相对冷却了120K。

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