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Effects of geometrical symmetry on the vortex in mesoscopic superconductors

机译:几何对称性对介观超导体涡旋的影响

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We first systematically study the multivortex states in mesoscopic superconductors via self-consistent Bogoliubov-de Gennes equations. Our work focuses on how the geometrical symmetry affects the penetration and arrangement of vortices in mesoscopic superconductors and find that the key parameter determining the entrance of the vortex is the current density at the hot spots on the edge of sample. Through determining the spatial distribution of hot spots, the geometrical symmetry of the superconducting sample influences the nucleation and entrance of vortices. Our results propose one possible experimental approach to control and manipulate the quantum states of mesoscopic superconductors with their topological geometries, and they can be easily generalized to the confined superfluids and Bose-Einstein condensates.
机译:我们首先通过自洽的Bogoliubov-de Gennes方程系统地研究介观超导体中的多重涡态。我们的工作集中在几何对称性如何影响介观超导体中涡流的渗透和排列上,并且发现确定涡流入口的关键参数是样品边缘热点处的电流密度。通过确定热点的空间分布,超导样品的几何对称性会影响旋涡的形核和进入。我们的结果提出了一种控制和操纵介观超导体的量子态及其拓扑几何形状的可能的实验方法,并且可以轻松地将其推广到受限的超流体和玻色-爱因斯坦凝聚体。

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