超越通常的近似:时间相关的磁阱重新审视

J.H. Müller, O. Morsch, D. Ciampini, M. Anderlini, R. Mannella, E. Arimondo
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引用次数: 1

摘要

原子在时间轨道势阱(TOP)中的运动通常用绝热和时间平均近似来描述。在这项工作中,我们表明,仔细的实验分析揭示了对这两种近似的修正:原子在随时间变化的捕获场频率下的微运动形状,以及原子的平衡位置对偏置场旋转感的依赖。前者可以很容易地从理论上解释,而后者则需要涉及几何力的更复杂的分析处理。实验结果和数值模拟结果与数据吻合较好。此外,讨论了玻色-爱因斯坦凝聚实验的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beyond the usual approximations: Time-dependent magnetic traps revisited

The motion of atoms in time-orbiting potential (TOP) traps is usually described by applying adiabatic and time-averaging approximations. In this work we show that careful experimental analysis reveals corrections to both of these approximations in the shape of a micromotion of the atoms at the frequency of the time-dependent trapping field and of a dependence of the equilibrium position of the atoms on the sense of rotation of the bias field. Whereas the former can be easily explained theoretically, the latter requires a more sophisticated analytical treatment involving geometric forces. We present experimental results and numerical simulations which agree well with the data. Furthermore, implications for Bose–Einstein condensation experiments are discussed.

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