受光学晶格限制的玻色-爱因斯坦凝聚中的涡旋

P. Kevrekidis, R. Carretero-Gonz'alez, G. Theocharis, D. Frantzeskakis, B. Malomed
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引用次数: 26

摘要

我们研究了在光学晶格和抛物型磁阱存在下,排斥性玻色-爱因斯坦凝聚体中涡旋的动力学。动力学对相对于磁阱的OL电位的相位敏感,而对OL强度的依赖较小。对于余弦OL势,在陷阱的中心产生一个局部最小值,为漩涡创造一个稳定的平衡,而在正弦势的情况下,漩涡从中心被驱逐,表现出螺旋运动。研究人员还研究了在远离陷阱中心的地方产生涡流的情况,揭示了缓慢的向外螺旋漂移。数值结果用变分近似的解析形式解释。最后,在离散模型的激励下(相当于强OL晶格的情况),我们提出了一种由两对反相孤子组成的新型涡旋。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vortices in a Bose-Einstein condensate confined by an optical lattice
We investigate the dynamics of vortices in repulsive Bose–Einstein condensates in the presence of an optical lattice (OL) and a parabolic magnetic trap. The dynamics is sensitive to the phase of the OL potential relative to the magnetic trap, and depends less on the OL strength. For the cosinusoidal OL potential, a local minimum is generated at the trap's centre, creating a stable equilibrium for the vortex, while in the case of the sinusoidal potential, the vortex is expelled from the centre, demonstrating spiral motion. Cases where the vortex is created far from the trap's centre are also studied, revealing slow outward-spiralling drift. Numerical results are explained in an analytical form by means of a variational approximation. Finally, motivated by a discrete model (which is tantamount to the case of the strong OL lattice), we present a novel type of vortex consisting of two pairs of antiphase solitons.
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