论文标题
二维Rashba系统SI(111)的鞍点附近的超导率 - $ \ sqrt {3} \ times \ sqrt {3} $ - (tl,pb)
Superconductivity near the saddle point in the two-dimensional Rashba system Si(111)-$\sqrt{3}\times\sqrt{3}$-(Tl,Pb)
论文作者
论文摘要
二维RASHBA超导体SI(111) - $ \ sqrt {3} \ times \ sqrt {3} $ - (TL,PB)是混合旋转旋转和 - 三角形超导性的候选平台。最近的扫描隧道显微镜(STM)实验显示了涡流核心的伪群,这表明有限的三重态组件[T. T. nakamura $ \ textit {et al。} $,物理。修订版B $ \ bf {98} $,134505(2018)]。超导间隙和低能带结构的详细光谱信息对于建立推定的三重态超导性是必要的。在这里,我们在SI(111) - $ \ sqrt {3} \ times \ sqrt {3} $ - (tl,pb)上进行了高能分辨率光谱成像实验。我们发现,包括涡旋核光谱在内的各种光谱特征与旋转singlet $ s $ - 波超导率一致,没有三重态组件的迹象。与先前的STM结果的明显矛盾表明,超导性的性质在同一系统内发生了变化。从对准粒子干扰模式的分析中,我们发现费米能量位于$ \ overline {\ rm {m}} $点附近的马鞍点附近。我们推测,超导率的性质因鞍点的能量而异,而费米能量由于不同带填充而导致样品依赖性。
Two-dimensional Rashba superconductor Si(111)-$\sqrt{3}\times\sqrt{3}$-(Tl,Pb) is a candidate platform of mixed spin-singlet and -triplet superconductivity. A recent scanning tunneling microscope (STM) experiment revealed a pseudogap at the vortex core, suggesting the finite triplet component [T. Nakamura $\textit{et al.}$, Phys. Rev. B $\bf{ 98}$, 134505 (2018)]. Detailed spectroscopic information of the superconducting gap and the low-energy band structure is necessary to establish the putative triplet superconductivity. Here, we performed high-energy-resolution spectroscopic imaging experiments on Si(111)-$\sqrt{3}\times\sqrt{3}$-(Tl,Pb) using an ultra-low temperature STM. We found that various spectroscopic features, including the vortex-core spectrum, are consistent with spin-singlet $s$-wave superconductivity, having no sign of the triplet component. The apparent contradiction with the previous STM result suggests that the nature of superconductivity changes within the same system. From the analysis of the quasiparticle interference patterns, we found that the Fermi energy is in the close vicinity of the saddle point near the $\overline{\rm{M}}$ point. We speculate that the nature of superconductivity varies depending on the saddle-point energy with respect to the Fermi energy, which is sample-dependent due to different band filling.