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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Efficient Formation of Ultracold Molecules with Chirped Nanosecond Pulses
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Efficient Formation of Ultracold Molecules with Chirped Nanosecond Pulses

机译:Chi声纳秒脉冲的超冷分子的有效形成。

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We describe experiments and associated quantum simulations involving the production of ultracold Rb-87(2) molecules with nanosecond pulses of frequency-chirped light. With appropriate chirp parameters, the formation is dominated by coherent processes. For a positive chirp, excited molecules are produced by photoassociation early in the chirp, and then transferred into high vibrational levels of the lowest triplet state by stimulated emission later in the chirp. Generally good agreement is seen between the data and the simulations. Shaping of the chirp can lead to a significant enhancement of the formation rate. Further improvements using higher intensities and different intermediate states are predicted.
机译:我们描述了实验和相关的量子模拟,其中包括具有nano频率脉冲的纳秒脉冲的超冷Rb-87(2)分子的生产。使用适当的线性调频参数,地层以相干过程为主。对于正chi,在,中早期通过光缔合产生激发的分子,然后在later中通过激发发射转移到最低三重态的高振动水平。通常在数据和仿真之间可以看到良好的一致性。 rp的成形可以导致形成速率的显着提高。预计将使用更高的强度和不同的中间状态进行进一步的改进。

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