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Vortices and magnetic impurities

机译:漩涡和磁性杂质

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Ginzburg-Landau vortices in superconductors attract or repel depending on whether the value of the coupling constant λ is less than 1 or larger than 1. At critical coupling λ = 1 , it was previously observed that a strongly localized magnetic impurity behaves very similarly to a vortex. This remains true for axially symmetric configurations away from critical coupling. In particular, a delta function impurity of a suitable strength is related to a vortex configuration without impurity by singular gauge transformation. However, the interaction of vortices and impurities is more subtle and depends not only on the coupling constant λ and the impurity strength, but also on how broad the impurity is. Furthermore, the interaction typically depends on the distance and may be attractive at short distances and repulsive at long distances. Numerical simulations confirm moduli space approximation results for the scattering of one and two vortices with an impurity. However, a double vortex will split up when scattering with an impurity, and the direction of the split depends on the sign of the impurity. Head-on collisions of a single vortex with different impurities away from critical coupling are also briefly discussed.
机译:超导体中的Ginzburg-Landau涡流根据耦合常数λ的值是否小于1或大于1.在关键耦合λ= 1时,它预先观察到强烈局部化的磁杂质表现得非常类似于a涡流。这对于远离关键耦合的轴对称配置仍然如此。特别地,合适强度的δ功能杂质与无杂质的涡旋构型有关,无杂质转化。然而,涡流和杂质的相互作用更加微妙,不仅取决于偶联常数λ和杂质强度,还取决于杂质的宽度。此外,相互作用通常取决于距离,并且可以在短距离处具有吸引力,并且长距离释放。数值模拟确认模型空间近似导致散射具有杂质的一个和两个涡流的散射。然而,在用杂质散射时,双涡流将分开,并且分裂的方向取决于杂质的符号。还简要讨论了远离关键耦合的不同杂质的单个涡旋的头部碰撞。

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