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Nonequilibrium dynamics induced by miscible–immiscible transition in binary Bose–Einstein condensates

机译:二元玻色-爱因斯坦凝聚物中混溶-非混溶转变引起的非平衡动力学

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We have observed and characterized the nonequilibrium spatial dynamics of a two-component 87Rb Bose–Einstein condensate (BEC) that is controllable switched back and forth between the miscible and immiscible phases of the phase separation transition by changing the internal states of the 87Rb atoms. The subsequent evolution exhibits large scale oscillations of the spatial structure that involve component mixing and separation. We show that the larger total energy of the miscible system results in a higher oscillation frequency. This investigation introduces a new technique to control the miscibility and the spatial degrees of freedom in atomic BECs.
机译:我们已经观察到并表征了两组分87Rb玻色-爱因斯坦凝聚物(BEC)的非平衡空间动力学,该动力学可通过改变87Rb原子的内部状态在相分离过渡的可混相和不可混相之间来回控制。随后的演变显示出空间结构的大规模振荡,其中涉及组分的混合和分离。我们表明,可混溶系统的较大总能量会导致较高的振荡频率。这项研究引入了一种控制原子BEC中的可混溶性和空间自由度的新技术。

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