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Nontrivial paired states in novel topological superconductors

机译:新颖的拓扑超导体中的非体现配对状态

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We report on the superconductive paired states in TbPdBi, beta-type FeSe and CaSn3 single crystals through temperature dependence of magnetic penetration depth analysis down to 0.040 K. For half-Heusler TbPdBi, in ultra-low temperature region we traced the T-3 power-law behavior of penetration depth indicating the nodeless topological superconductivity with anisotropic gap structure which was confirmed with the analysis of superfluid density. That highlights the role of thermally activated quasi-particles in the pairing mechanism of TBPdBi for which the variation of Delta lambda(T) wanders off the renown quadratic behavior of penetration depth. In FeSe the contribution of London depth was described with a power law (n approximate to 2.4) and the superfluid density fitted well with two-band d + d model in which the values of both gaps are substantially smaller than the gap size expected by the isotropic BCS model, due to the nodeless anisotropic gap symmetry. In CaSn3, temperature variation of magnetic penetration depth exhibited linear behavior which is ascribed to the topologically nontrivial electronic states. Also, fitting the results of superfluid density exhibited features of multiband pairing allowing the nodal gap in the electronic states which is in good agreement with the expectation of London penetration depth. The complex superconducting order parameter is suggestive of two-dimensional spin singlet or mixing singlet-triplet pairing states behind the signatures of superconductivity in CaSn3. The mechanisms of pairing symmetry uncovered by the temperature dependence of penetration depth study of TbPdBi, FeSe and CaSn3 meet the requirements for topological superconductivity. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们通过磁性穿透深度分析的温度依赖于下降至0.040k的温度依赖于0.040k的温度依赖于0.040k的超导配对状态报告。在超低温度区域中,我们跟踪了T-3功率 - 用超流密度分析证实了具有各向异性间隙结构的无点拓扑超导性的渗透深度的行为。这突出了热活化的准粒子在TBPDBI的配对机构中的作用,其中Delta Lambda(T)徘徊在渗透深度的着名二次行为中的变化。在FESE中,伦敦深度的贡献用电力法(n近似为2.4),并且具有两个带D + D模型的超流体密度很好,其中两个间隙的值基本上小于预期的间隙尺寸各向同性BCS模型,由于点各向异性间隙对称性。在Casn3中,磁穿透深度的温度变化表现出直线行为,其归因于拓扑非学生电子态。此外,拟合超流体密度的结果表明多频带配对的特征,允许电子状态中的节点间隙与伦敦穿透深度的期望很好。复杂的超导顺序参数是三维旋转单态的暗示在Casn3中超导签名后面的二维旋转单次或混合单次三态配对状态。 TBPDBI,FESE和CASN3渗透深度研究的温度依赖性对称对称性的配对对称性机制符合拓扑超导性的要求。 (c)2020 Elsevier B.v.保留所有权利。

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