Spectral properties of a mixed singlet-triplet Ising superconductor

Sourabh Patil, Gaomin Tang, W. Belzig
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引用次数: 1

Abstract

Conventional two-dimensional superconductivity is destroyed when the critical in-plane magnetic field exceeds the so-called Pauli limit. Some monolayer transition-metal dichalcogenides lack inversion symmetry and the strong spin-orbit coupling leads to a valley-dependent Zeeman-like spin splitting. The resulting spin-valley locking lifts the valley degeneracy and results in a strong enhancement of the in-plane critical magnetic field. In these systems, it was predicted that the density of states in an in-plane field exhibits distinct mirage gaps at finite energies of about the spin-orbit coupling strength, which arise from a coupling of the electron and hole bands at energy larger than the superconducting gap. In this study, we investigate the impact of a triplet pairing channel on the spectral properties, primarily the mirage gap and the superconducting gap, in the clean limit. Notably, in the presence of the triplet pairing channel, the mirage-gap width is reduced for the low magnetic fields. Furthermore, when the temperature is lower than the triplet critical temperature, the mirage gaps survive even in the strong-field limit due to the finite singlet and triplet order parameters. Our work provides insights into controlling and understanding the properties of spin-triplet Cooper pairs.
单重态-三重态混合Ising超导体的光谱特性
当临界面内磁场超过所谓的泡利极限时,传统的二维超导性被破坏。一些单层过渡金属二硫族化合物缺乏反转对称性,强自旋-轨道耦合导致了谷依赖的类泽曼自旋分裂。由此产生的自旋谷锁定提升了谷简并并导致面内临界磁场的强烈增强。在这些系统中,预测了平面内场的态密度在大约自旋轨道耦合强度的有限能量下表现出明显的海市蜃楼间隙,这是由电子带和空穴带在大于超导间隙的能量下的耦合引起的。在这项研究中,我们研究了三重态配对通道在清洁极限下对光谱特性的影响,主要是海市蜃楼间隙和超导间隙。值得注意的是,在存在三重态配对通道的情况下,低磁场下海市蜃层隙宽度减小。此外,当温度低于三重态临界温度时,由于单重态和三重态序参量有限,即使在强场极限下,海市蜃楼间隙仍然存在。我们的工作为控制和理解自旋三重态库珀对的性质提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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