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Visualizing pairing symmetry in nematic superconductors using spin-polarized spectroscopy of magnetic impurities

机译:使用磁性杂质的旋转偏振光谱可视化向列超导体中的配对对称性

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摘要

We study the spin-polarized spectral properties of Yu-Shiba-Rusinov resonance states induced by magnetic impurities in 2- and 3-dimensional nematic superconductors: few layer Bi2Te3 grown on FeTe0.55Se0.45 (2D) and CuxBi2Se3 (3D). We focus on the relationship between pairing symmetry and the spatial structure of spin-polarized spectroscopy. We calculate the spin-polarized local density of states (SP LDOS) and the corresponding Fourier transformation using the T-matrix method for both the 2- and 3-dimensional materials. Various situations with different impurity orientations and different SP LDOSs have been investigated. We find that, like the quasiparticle interference spectrum, the spin-polarized spectroscopy can be applied to distinguish threefold rotation symmetric pairings, e.g. the plain s-wave pairing, chiral p-wave pairing, etc, and nematic pairings in these materials.
机译:我们研究了在2- X维向甲型超导体中由磁杂质诱导的yu-shiba-Rusinov共振状态的旋转偏振光谱特性:在Fete0.55S0.45(2D)和Cuxbi2Se3(3D)上生长的几层Bi2Te3。 我们专注于配对对称性与旋转偏振光谱的空间结构之间的关系。 我们使用T-矩阵法计算出状态(SP LDOS)的旋转偏振局部密度和相应的傅里叶变换,用于2和3维材料。 已经研究了不同杂质取向和不同SP LDOS的各种情况。 我们发现,与Quasiparticle干扰谱一样,可以应用自旋极化光谱,以区分三倍旋转对称配对,例如, 这些材料中的普通S波配对,手性p波配对等和向征准配对。

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