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Antivortices due to competing orbital and paramagnetic pair-breaking effects

机译:由于竞争的轨道和顺磁性成对破坏效应而产生的涡旋

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摘要

Thermodynamically stable vortex—antivortex structures in a quasi-twodimensional superconductor in a tilted magnetic field are predicted. For this geometry, both orbital and spin pair-breaking effects exist, with their relative strength depending on the tilt angle θ. The spectrum of possible states contains the ordinary vortex state (for large θ) and the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state (for θ = 0) as limits. The quasi-classical equations are solved nearH c2 for arbitrary θ and it is shown that stable states with co-existing vortices and antivortices exist in a small interval close to θ= 0. The results are compared with recent predictions of antivortices in mesoscopic samples.
机译:预测了倾斜磁场中准二维超导体中热力学稳定的涡旋-反涡旋结构。对于这种几何形状,同时存在轨道和自旋成对破坏效应,它们的相对强度取决于倾斜角θ。可能状态的频谱包含普通涡旋状态(对于大θ)和Fulde-Ferrell-Larkin-Ovchinnikov(FFLO)状态(对于θ= 0)作为限制。对于任意θ,在H c2 附近解准古典方程,结果表明,在接近θ= 0的小区间内,存在着同时存在涡旋和反涡旋的稳定状态。介观样品中抗涡的预测。

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