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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ion-neutral-atom sympathetic cooling in a hybrid linear rf Paul and magneto-optical trap
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Ion-neutral-atom sympathetic cooling in a hybrid linear rf Paul and magneto-optical trap

机译:线性线性射频Paul和磁光阱的离子中性原子交感冷却

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Long-range polarization forces between ions and neutral atoms result in large elastic scattering cross sections(e.g., ~106a.u. for Na-Na ~+ or Na-Ca ~+ at cold and ultracold temperatures). This suggests that a hybrid ion-neutral trap should offer a general means for significant sympathetic cooling of atomic or molecular ions. We present simion 7.0 simulation results concerning the advantages and limitations of sympathetic cooling within a hybrid trap apparatus consisting of a linear rf Paul trap concentric with a Na magneto-optical trap(MOT). This paper explores the impact of various heating mechanisms on the hybrid system and how parameters related to the MOT, Paul trap, number of ions, and ion species affect the efficiency of the sympathetic cooling.
机译:离子和中性原子之间的长距离极化力会导致较大的弹性散射截面(例如,在冷和超冷温度下,Na-Na〜+或Na-Ca〜+约为〜106a.u。)。这表明,杂化离子中性阱应为原子或分子离子的显着交感冷却提供一般手段。我们提出了simion 7.0仿真结果,该结果涉及在由线性射频Paul陷阱与Na磁光陷阱(MOT)同心组成的混合陷阱装置中进行共鸣冷却的优势和局限性。本文探讨了各种加热机制对混合系统的影响,以及与MOT,Paul阱,离子数和离子种类有关的参数如何影响交感冷却的效率。

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