论文标题

在二维通道中跨越经典和量子涡流

Classical and quantum vortex leapfrogging in two-dimensional channels

论文作者

Galantucci, Luca, Sciacca, Michele, Parker, Nick G, Baggaley, Andrew W, Barenghi, Carlo F

论文摘要

同轴涡流环的跨越是一种著名的效果,自Helmholtz时代以来就已经注意到。超冷原子气体的最新进展表明,现在可以在量子流体中研究该作用。这些系统的特征的强烈限制激发了研究狭窄通道内涡流的跨越。使用二维点涡流模型,我们表明,在二维通道的约束几何形状中,动力学比无限的域更丰富:同时确定了标准跨越及其缺乏的已知状态,我们确定了向后跨越和周期轨道的新制度。此外,通过求解Bose-Einstein凝结物的毛皮 - 皮塔维斯基方程,我们也表明,量子涡流也存在所有四个方案。最后,我们讨论了与涡流分离或通道大小相比,经典和量子涡流跨越的差异,这些差异会显着,并且由于高速速度,凝结物中的可压缩性效应变得显着。

The leapfrogging of coaxial vortex rings is a famous effect which has been noticed since the times of Helmholtz. Recent advances in ultra-cold atomic gases show that the effect can now be studied in quantum fluids. The strong confinement which characterizes these systems motivates the study of leapfrogging of vortices within narrow channels. Using the two-dimensional point vortex model, we show that in the constrained geometry of a two-dimensional channel the dynamics is richer than in an unbounded domain: alongsize the known regimes of standard leapfrogging and the absence of it, we identify new regimes of backward leapfrogging and periodic orbits. Moreover, by solving the Gross-Pitaevskii equation for a Bose-Einstein condensate, we show that all four regimes exist for quantum vortices too. Finally, we discuss the differences between classical and quantum vortex leapfrogging which appear when the quantum healing length becomes significant compared to the vortex separation or the channel size, and when, due to high velocity, compressibility effects in the condensate becomes significant.

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