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Direct observation of ultrafast many-body electron dynamics in an ultracold Rydberg gas

机译:直接观察超冷Rydberg气体中的超快多体电子动力学

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摘要

Many-body correlations govern a variety of important quantum phenomena such as the emergence of superconductivity and magnetism. Understanding quantum many-body systems is thus one of the central goals of modern sciences. Here we demonstrate an experimental approach towards this goal by utilizing an ultracold Rydberg gas generated with a broadband picosecond laser pulse. We follow the ultrafast evolution of its electronic coherence by time-domain Ramsey interferometry with attosecond precision. The observed electronic coherence shows an ultrafast oscillation with a period of 1 femtosecond, whose phase shift on the attosecond timescale is consistent with many-body correlations among Rydberg atoms beyond mean-field approximations. This coherent and ultrafast many-body dynamics is actively controlled by tuning the orbital size and population of the Rydberg state, as well as the mean atomic distance. Our approach will offer a versatile platform to observe and manipulate non-equilibrium dynamics of quantum many-body systems on the ultrafast timescale.
机译:多体关联控制着各种重要的量子现象,例如超导性和磁性的出现。因此,了解量子多体系统是现代科学的中心目标之一。在这里,我们演示了通过利用宽带皮秒激光脉冲产生的超冷Rydberg气体实现这一目标的实验方法。我们通过时域Ramsey干涉仪以阿秒精度跟踪其电子相干性的超快速发展。观测到的电子相干性表现出一个超快的振荡,周期为1飞秒,其在阿秒级时标上的相移与里德堡原子之间的多体相关性(均值近似)一致。这种连贯且超快的多体动力学是通过调整Rydberg态的轨道大小和总体以及平均原子距离来主动控制的。我们的方法将提供一个通用的平台,以超快的时间尺度观察和操纵量子多体系统的非平衡动力学。

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