首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Vortex states and spin textures of rotating spin-orbit-coupled Bose-Einstein condensates in a toroidal trap
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Vortex states and spin textures of rotating spin-orbit-coupled Bose-Einstein condensates in a toroidal trap

机译:涡旋状态和旋转旋转轨道耦合的Bose-Einstein凝结物的旋转纹理在环形陷阱中凝结物

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摘要

We consider the ground-state properties of Rashba spin-orbit-coupled pseudo-spin-1/2 Bose-Einstein condensates (BECs) in a rotating two-dimensional (2D) toroidal trap. In the absence of spin-orbit coupling (SOC), the increasing rotation frequency enhances the creation of giant vortices for the initially miscible BECs, while it can lead to the formation of semiring density patterns with irregular hidden vortex structures for the initially immiscible BECs. Without rotation, strong 2D isotropic SOC yields a heliciform-stripe phase for the initially immiscible BECs. Combined effects of rotation, SOC, and interatomic interactions on the vortex structures and typical spin textures of the ground state of the system are discussed systematically. In particular, for a fixed rotation frequency above the critical value, the increasing isotropic SOC favors a visible vortex necklace in each component which is accompanied by a hidden giant vortex plus a (several) hidden vortex necklace(s) in the central region. In the case of one-dimensional anisotropic SOC, large SOC strength results in the generation of hidden linear vortex string and the transition from initial component separation (component mixing) to component mixing (component separation). Furthermore, the peculiar spin textures including skyrmion lattice, skyrmion pair and skyrmion string are revealed in this system.
机译:我们考虑Rashba旋转轨道耦合的伪旋转-1 / 2 Bose-Einstein冷凝物(BECS)的地态性质在旋转的二维(2D)环形阱中。在没有自旋轨道耦合(SoC)的情况下,旋转频率的增加增强了最初混溶的巨型涡流的产生,而它可以导致形成具有不规则隐藏涡流结构的血清密度图案,最初不混溶的BEC。在不旋转的情况下,强2D各向同性SOC产生初始不混溶的BECS的螺旋状阶段。系统地讨论了旋转,SOC和网状物相互作用对系统的涡旋结构和典型自旋纹理的综合影响。特别地,对于高于临界值的固定旋转频率,增加的各向同性SoC在每个组件中伴随着伴随着中央区域的隐藏巨型涡流加上A(几个)隐藏的涡流项链的每个组件中的可见涡流项链。在一维各向异性SOC的情况下,大的SOC强度导致隐藏的线性涡流串的产生和从初始分量分离(分量混合)到组分混合(分量分离)的过渡。此外,在该系统中揭示了包括Skyrmion格子,Skyrmion对和Skyrmion String的特殊旋转纹理。

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