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Quasiclassical analysis of vortex lattice states in Rashba noncentrosymmetric superconductors

机译:Rashba非中心对称超导体中涡旋晶格态的拟经典分析。

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摘要

Vortex lattice states occurring in noncentrosymmetric superconductors with a spin-orbit coupling of Rashba type under a magnetic field parallel to the symmetry plane are examined by assuming the s-wave pairing case and in an approach combining the quasiclassical theory with the Landau level expansion of the superconducting order parameter. The resulting field-temperature phase diagrams include not only a discontinuous transition but a continuous crossover between different vortex lattice structures, and, further, a critical end point of a structural transition line is found at an intermediate field and a low temperature in the present approach. It is pointed out that the strange field dependence of the vortex lattice structure is a consequence of that of its anisotropy stemming from the Rashba spin-orbit coupling, and that the critical end point is related to the helical phase modulation peculiar to these materials in the ideal Pauli-limited case. Furthermore, calculation results on the local density of states detectable in STM experiments are also presented.
机译:通过假设s波成对情况,并结合准经典理论和Ladba级朗道能级扩展的方法,研究了在具有对称平面的磁场下具有Rashba型自旋轨道耦合的非中心对称超导体中产生的涡旋晶格状态。超导阶数参数。所得的场温相图不仅包括不连续的转变,而且还包括不同涡流晶格结构之间的连续交叉,此外,在本方法中,在中间场和低温下发现了结构转变线的临界终点。 。需要指出的是,涡旋晶格结构的奇异场相关性是其各向异性源自Rashba自旋-轨道耦合的结果,并且临界终点与这些材料中特有的螺旋相位调制有关。理想的Pauli限量表壳。此外,还介绍了在STM实验中可检测状态的局部密度的计算结果。

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