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Doppler cooling of an optically dense cloud of magnetically trapped atoms

机译:多普勒冷却磁致密原子的光致密云

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We have studied a general technique for laser cooling a cloud of polarized trapped atoms down to the Doppler temperature. A one-dimensional optical molasses created with polarized light cools the axial motional degree of freedom of the atoms in the trap. Cooling of the radial degrees of freedom can be modeled by reabsorption of scattered photons in the optically dense cloud. We present experimental results for a cloud of chromium atoms in a magnetic trap. A simple model based on rate equations shows quantitative agreement with the experimental results. This scheme allows us to readily prepare a dense cloud of atoms in a magnetic trap with good starting conditions for evaporative cooling. (C) 2003 Optical Society of America. [References: 40]
机译:我们已经研究了一种将极化捕获的原子云激光冷却到多普勒温度的通用技术。用偏振光产生的一维光学糖蜜冷却了阱中原子的轴向运动自由度。径向自由度的冷却可以通过光密云中散射光子的重吸收来建模。我们介绍了磁阱中铬原子云的实验结果。基于速率方程的简单模型显示出与实验结果的定量一致性。该方案使我们能够在具有良好的蒸发冷却起始条件的磁阱中轻松制备密集的原子云。 (C)2003年美国眼镜学会。 [参考:40]

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