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首页> 外文期刊>Journal of Modern Optics >Creation of ultracold molecules within the lifetime scale by direct implementation of an optical frequency comb
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Creation of ultracold molecules within the lifetime scale by direct implementation of an optical frequency comb

机译:通过直接实施光学频率梳线在寿命范围内创建超薄分子

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摘要

A method is proposed to create molecules in the ultracold state from the Feshbach molecules by stepwise adiabatic passage using an optical frequency comb without losses due to decoherence. An emphasis is made on the impact of the vibrational state manifold on controllability of the coherent dynamics by including five excited states into the model. The results are compared with recently reported results on a three-level. system. Sinusoidal modulation across an individual pulse in the pulse train is applied, leading to the creation of a quasi-dark state, which minimizes population of the transitional, vibrational state manifold, and efficiently mitigates decoherence in the system. The parity of the temporal chirp is shown to be an important factor in designing population dynamics in the system.
机译:提出一种方法,用于通过使用光学频率梳通过旋转频率梳,从Feshbach分子创造来自Feshbach分子的超级绝热通道。 强调振动状态歧管对模型中的五个激发状态的相干动力的可控性的影响。 将结果与最近报道的三级结果进行了比较。 系统。 施加脉冲系中各个脉冲的正弦调制,从而产生了拟暗状态的创建,这最小化过渡,振动状态歧管的群体,并有效地减轻了系统中的变阻。 时间啁啾的奇偶校验被认为是在系统中设计人口动态的重要因素。

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