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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Structure of two-component Bose-Einstein condensates with respective vortex-antivortex superposition states
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Structure of two-component Bose-Einstein condensates with respective vortex-antivortex superposition states

机译:具有各自涡旋-反涡旋叠加态的两组分玻色-爱因斯坦凝聚体的结构

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We investigate the phase structure of two-component Bose-Einstein condensates (BECs) with repulsive intra- and interspecies interactions in the presence of respective vortex-antivortex superposition states (VAVSSs). We show that different winding numbers of the vortex and antivortex and different intra- and interspecies interaction strengths may lead to different phase configurations, such as fully separated phases, inlaid separated phases, asymmetric separated phases, and partially mixed phases, where the density profile of each component displays a petal-like (or modulated petal-like) structure. A phase diagram is given for the case of equal unit winding numbers of the vortex and antivortex in the respective components, and it is shown that the conventional criterion for phase separation of two-component BECs is not applicable for the present system due to the VAVSSs. In addition, our nonlinear stability analysis indicates that the typical phase structures of two-component BECs with VAVSSs allow them to be detected in experiments. Moreover, for the case of unequal winding numbers of the vortex and antivortex in the respective components, we find that each component in any of the possible phase structures is in a cluster state of vortices and antivortices, where the topological defects appear in the form of a singly quantized visible vortex, or a hidden vortex, or a ghost vortex, depending on the specific parameters of the system. Finally, a general relationship between the vortex-antivortex cluster state and the winding numbers of vortex and antivortex is revealed.
机译:我们研究了在存在各自的涡旋-反涡旋叠加态(VAVSSs)的情况下具有排斥性的内部和种间相互作用的两组分玻色-爱因斯坦凝聚物(BEC)的相结构。我们显示出不同的涡旋和反涡旋缠绕数以及不同的种间和种间相互作用强度可能导致不同的相构型,例如完全分离的相,镶嵌分离的相,不对称分离的相和部分混合的相,其中每个组件都显示出花瓣状(或调制的花瓣状)结构。给出了在各个分量中涡旋和反涡旋的单位绕组数相等的情况下的相位图,并且表明由于VAVSS,两分量BEC的常规相分离准则不适用于本系统。 。此外,我们的非线性稳定性分析表明,带有VAVSS的两组分BEC的典型相结构可以在实验中检测到它们。此外,对于在各个分量中涡旋和反涡旋的绕组数不相等的情况,我们发现任何可能的相结构中的每个分量都处于涡旋和反涡旋的簇状状态,其中拓扑缺陷的形式为单个量化的可见涡旋,隐藏涡旋或幻影涡旋,具体取决于系统的特定参数。最后,揭示了涡旋-反涡旋簇状态与涡旋和反涡旋的缠绕数之间的一般关系。

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