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Onsager vortex formation in Bose-Einstein condensates in two-dimensional power-law traps

机译:二维幂律陷阱中玻色-爱因斯坦凝聚物中Onsager涡的形成

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摘要

We study computationally dynamics of quantized vortices in two-dimensional superfluid Bose-Einstein condensates confined in highly oblate power-law traps. We have found that the formation of large-scale Onsager vortex clusters prevalent in steep-walled traps is suppressed in condensates confined by harmonic potentials. However, the shape of the trapping potential does not appear to adversely affect the evaporative heating efficiency of the vortex gas. Instead, the suppression of Onsager vortex formation in harmonic traps can be understood in terms of the energy of the vortex configurations. Furthermore, we find that the vortex-antivortex pair annihilation that underpins the vortex evaporative heating mechanism requires the interaction of at least three vortices. We conclude that experimental observation of Onsager vortices should be the most apparent in flat or inverted-bottom traps.
机译:我们研究二维超流体Bose-Einstein凝析物中的涡旋的计算动力学,该凝结在高度扁率的幂律陷阱中。我们发现,在陡壁阱中普遍存在的大规模Onsager旋涡团簇的形成被谐波势所限制的凝结水被抑制。但是,俘获势的形状似乎不会不利地影响涡流气体的蒸发加热效率。取而代之的是,可以根据涡旋结构的能量来理解抑制谐波陷阱中的Onsager涡旋。此外,我们发现支撑涡旋蒸发加热机制的涡旋-反涡旋对an灭需要至少三个涡旋的相互作用。我们得出的结论是,对Onsager涡旋的实验观察应该在平坦或倒底陷阱中最为明显。

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