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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Controlled interference of association paths in the conversion of ultracold atoms into molecules
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Controlled interference of association paths in the conversion of ultracold atoms into molecules

机译:在超冷原子转化为分子时缔合路径的受控干扰

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We present a proposal for controlling the conversion of ultracold atoms into molecules by fixing the phase difference between two oscillating magnetic fields. The scheme is based on the use of a magnetic Feshbach resonance with a field modulation that incorporates terms oscillating with frequencies corresponding to the main resonance and one of the subharmonics. The interference between the two association processes activated by the oscillating terms is controlled via the phase difference. As a result, significant increase or decrease of the effective interaction strength can be achieved. The realization of the proposal is feasible under standard technical conditions. In particular, the method is found to be robust against the effect of the sources of decoherence present in the practical setup. The applicability of the approach to deal with quadratic terms in the field modulation is discussed.
机译:我们提出了一种通过固定两个振荡磁场之间的相位差来控制超冷原子向分子转化的建议。该方案基于具有场调制的磁费什巴赫共振的使用,该场调制结合了以与主共振和次谐波之一相对应的频率振荡的项。振荡项激活的两个关联过程之间的干扰是通过相位差控制的。结果,可以实现有效相互作用强度的显着增加或降低。在标准技术条件下,该建议的实现是可行的。特别地,发现该方法对于实际设置中存在的退相干源的影响是鲁棒的。讨论了该方法在场调制中处理二次项的适用性。

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