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Experimental realization of a Rydberg optical Feshbach resonance in a quantum many-body system

机译:量子多体系统中Rydberg光学Feshbach共振的实验实现

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摘要

Feshbach resonances are a powerful tool to tune the interaction in an ultracold atomic gas. The commonly used magnetic Feshbach resonances are specific for each species and are restricted with respect to their temporal and spatial modulation. Optical Feshbach resonances are an alternative which can overcome this limitation. Here, we show that ultra-long-range Rydberg molecules can be used to implement an optical Feshbach resonance. Tuning the on-site interaction of a degenerate Bose gas in a 3D optical lattice, we demonstrate a similar performance compared to recent realizations of optical Feshbach resonances using intercombination transitions. Our results open up a class of optical Feshbach resonances with a plenitude of available lines for many atomic species and the possibility to further increase the performance by carefully selecting the underlying Rydberg state.
机译:菲什巴赫共振是调节超冷原子气体中相互作用的有力工具。常用的Feshbach磁共振对于每个物种来说都是特定的,并且在其时间和空间调制方面受到限制。菲什巴赫光学共振是可以克服该限制的替代方法。在这里,我们表明,超远程Rydberg分子可用于实现光学Feshbach共振。调整退化的玻色气体在3D光学晶格中的现场相互作用,与使用互变跃迁的光学Feshbach共振的最新实现相比,我们展示了相似的性能。我们的结果打开了一类光学Feshbach共振,为许多原子种类提供了很多可用的谱线,并有可能通过仔细选择潜在的里德堡态来进一步提高性能。

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