Signatures of triplet correlations in density of states of Ising superconductors

M. Haim, D. Möckli, M. Khodas
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引用次数: 7

Abstract

The few-layer transition metal dichalcogenides (TMDs) have been recently suggested as a platform for controlled unconventional superconductivity. We study the manifestations of unconventional triplet pairing in the density of states of a disordered TMD based monolayer. The conventional singlet pairing attraction is assumed to be the dominant pairing interaction. We map the phase diagrams of disordered Ising superconductors in the plane of temperature and the in-plane magnetic field. The latter suppresses singlet and promote triplet correlations. The triplet order parameters of a trivial (non-trivial) symmetry compete (cooperate) with the singlet order parameter which gives rise to a rich phase diagram. We locate the model-dependent phase boundaries and compute the order parameters in each of the distinct phases. With this information, we obtain the density of states by solving the Gorkov equation. The triplet components of the order parameters may change an apparent width of the density of states by significantly increasing the critical field. The triplet components of the order parameters lead to the density of states broadening significantly exceeding the broadening induced by magnetic field and disorder in the singlet superconductor.
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伊辛超导体态密度中三重态相关的特征
近年来,人们提出了利用低层过渡金属二硫族化合物(TMDs)作为可控非常规超导材料的平台。我们研究了非常规三重态配对在无序TMD基单层态密度中的表现。传统的单线态配对吸引被认为是主要的配对相互作用。我们在温度平面和平面磁场平面上绘制了无序伊辛超导体的相图。后者抑制单线态并促进三重态相关。平凡(非平凡)对称的三重序参数与单重态序参数竞争(合作),从而产生丰富的相图。我们定位了与模型相关的阶段边界,并计算了每个不同阶段的顺序参数。利用这些信息,我们通过求解Gorkov方程得到态的密度。序参量的三重分量可以通过显著增加临界场来改变态密度的表观宽度。在单线态超导体中,有序参数的三重态分量导致态密度的展宽明显超过磁场和无序引起的展宽。
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