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Vortex Reconnections and Rebounds in Trapped Atomic Bose-Einstein Condensates

机译:被困原子玻色-爱因斯坦凝聚物中的涡旋重新连接和反弹。

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Reconnections and interactions of filamentary coherent structures play a fundamental role in the dynamics of fluids, redistributing energy and helicity among the length scales and inducing fine-scale turbulent mixing. Unlike ordinary fluids, where vorticity is a continuous field, in quantum fluids vorticity is concentrated into discrete (quantized) vortex lines turning vortex reconnections into isolated events, making it conceptually easier to study. Here, we report experimental and numerical observations of three-dimensional quantum vortex interactions in a cigar-shaped atomic Bose-Einstein condensate. In addition to standard reconnections, already numerically and experimentally observed in homogeneous systems away from boundaries, we show that double reconnections, rebounds, and ejections can also occur as a consequence of the nonhomogeneous, confined nature of the system.
机译:丝状相干结构的重新连接和相互作用在流体动力学,在长度尺度之间重新分配能量和螺旋度并引发细尺度的湍流混合中起着基本作用。与普通流体不同,在普通流体中,涡度是一个连续的场,在量子流体中,涡度集中到离散的(量化的)涡旋线中,从而将涡旋重新连接变成孤立的事件,从而使其在概念上更容易研究。在这里,我们报告在雪茄形原子玻色-爱因斯坦凝聚物中三维量子涡旋相互作用的实验和数值观察。除了已经在数值上和实验上在均质系统中远离边界的标准重新连接之外,我们还显示由于系统不均匀,受限的性质,也可能发生双重重新连接,反弹和弹出。

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