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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Skyrmionic configuration and half-quantum vortex-antivortex pair in mesoscopic p-wave superconducting noncircular systems
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Skyrmionic configuration and half-quantum vortex-antivortex pair in mesoscopic p-wave superconducting noncircular systems

机译:介观p波超导非圆系统中的天空离子构型和半量子涡-反涡对

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摘要

In the framework of the microscopic Bogoliubov-de Gennes theory, we study the topological properties of skyrmionic states under applied magnetic flux in mesoscopic symmetric and asymmetric ρ-wave superconducting noncircular systems. For a perfect square (rectangular) sample, an enclosed square-loop-like (parallelogram-loop-like) chain comprising four spatially separated one-component vortices emerges for a single-skyrmion state with the topological charge Q = 2. A multiskyrmion state containing two concentric skyrmions can be found in the square case, and more complex skyrmionic structures with Q > 2 take place when the superconducting pairing interaction becomes stronger. By contrast, the mesoscopic rectangular geometry favors different arrangements of skyrmions. A novel type of multiskyrmion states with two or three separated skyrmions aligning along the long side of the rectangle becomes stable, accompanied with the half-quantum vortex-antivortex (V-Av) pair in one component of the order parameter. Moreover, for the square loops with a small square hole, the singly quantized vortex always traps in the centered or off-centered hole, while the coreless skyrmion located in the superconducting region tries to restore the centrally symmetric character. For some critical displacement of the off-centered hole, the half-quantum V-Av pair can occur in such asymmetric system.
机译:在微观Bogoliubov-de Gennes理论的框架内,我们研究了介观对称和非对称ρ波超导非圆形系统在施加的磁通量下的天空离子态的拓扑特性。对于一个完美的正方形(矩形)样本,对于具有拓扑电荷Q = 2的单Skyrmion状态,出现了一个封闭的,由四个空间分离的单分量涡旋组成的方环状(平行四边形环状)链。在正方形情况下可以发现包含两个同心的天空离子,当超导配对相互作用变得更强时,会出现Q> 2的更复杂的天空离子结构。相反,介观矩形几何形状有利于天体的不同布置。沿着矩形的长边对齐的具有两个或三个分开的天秤的新型多天秤状态变得稳定,并且在阶数参数的一个分量中伴随有半量子涡-反涡(V-Av)对。此外,对于具有小方孔的方环,单个量化的涡流始终陷于中心孔或偏心孔中,而位于超导区域的无芯天rm试图恢复中心对称性。对于偏心孔的某些临界位移,半量子V-Av对可在这种不对称系统中发生。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第1期|014510.1-014510.12|共12页
  • 作者

    Guo-Qiao Zha;

  • 作者单位

    Department of Physics, Shanghai University, Shanghai 200444, China and Shanghai Key Laboratory of High Temperature Superconductors, Shanghai University, Shanghai 200444, China;

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