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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Topological interface physics of defects and textures in spinor Bose-Einstein condensates
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Topological interface physics of defects and textures in spinor Bose-Einstein condensates

机译:旋Bose-Einstein凝聚物中缺陷和织构的拓扑界面物理

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摘要

We provide a detailed description of our previously proposed scheme for topological interface engineering with constructed defects and textures perforating across coherent interfaces between different broken symmetries. We consider a spin-1 Bose-Einstein condensate, in which polar and ferromagnetic phases are prepared in spatially separated regions. We show that a stable coherent interface is established between the two phases, allowing defects of different topology to connect continuously across the boundary. We provide analytic constructions of interface-crossing defect solutions that could be experimentally phase imprinted using existing technology. By numerically minimizing the energy, we calculate the core structures of interface-crossing defect configurations. We demonstrate nontrivial core deformations to considerably more complex structures, such as the formation of an arch-shaped half-quantum line defect, an Alice arch, at the interface, with the topological charge of a point defect, whose emergence may be understood by the "hairy ball" theorem. Another example of an energetically stable object is the connection of a coreless vortex to a pair of half-quantum vortices. We show that rotation leads to spontaneous nucleation of defects in which a coreless vortex continuously transforms to a half-quantum vortex across the interface.
机译:我们提供了我们先前提出的拓扑接口工程方案的详细说明,该方案的构造缺陷和纹理贯穿不同的破坏对称性之间的相干接口。我们考虑自旋1玻色-爱因斯坦凝聚物,其中极性相和铁磁相在空间上分开的区域中制备。我们表明,在两相之间建立了一个稳定的相干接口,允许不同拓扑的缺陷跨边界连续连接。我们提供了跨界面缺陷解决方案的解析结构,可以使用现有技术以实验方式对其进行相印。通过在数值上最小化能量,我们可以计算出界面交叉缺陷配置的核心结构。我们证明了相当复杂的结构具有非平凡的核心变形,例如在界面处形成了拱形的半量子线缺陷,爱丽丝拱,以及点缺陷的拓扑电荷,该缺陷的出现可以通过以下方式理解: “毛球”定理。能量稳定对象的另一个示例是无核涡旋与一对半量子涡旋的连接。我们表明,旋转会导致缺陷的自发形核,其中无核涡旋不断地转变为跨界面的半量子涡旋。

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