论文标题

Rashba-Spin-Orbit耦合对超导硼掺杂纳米晶金刚石膜的影响:界面三胞胎超导性的证据

Effects of Rashba-spin-orbit coupling on superconducting boron-doped nanocrystalline diamond films: evidence of interfacial triplet superconductivity

论文作者

Bhattacharyya, Somnath, Mtsuko, Davie, Allen, Christopher, Coleman, Christopher

论文摘要

在钻石的许多显着特性中,用硼浓度掺杂的超导能力吸引了人们对碳群社区的极大兴趣。在考虑纳米晶硼掺杂系统时,降低的维度和限制效应导致了几种有趣的观察结果,最值得注意的是混合超导阶段的特征。在这里,我们提出了晶界的超高分辨率透射电子显微镜成像,并演示了复杂的显微结构如何导致载体相关性增强。我们观察到旋转轨道耦合(SOC)的标志性特征表现为弱反定位效应。据信,增强的SOC是由晶界界面上的反演对称性破裂以及晶粒之间的反对称限制潜力的组合而引起的,诱导了Rashba型SOC。从差分电导中明显的零偏置峰来看,我们证明了三胞胎成分的特征,该特征是由Singlet Cooper Pairs通过此类Rashba-Soc-Soc-Soc晶粒边界连接所引起的旋转混合而引起的。

Among the many remarkable properties of diamond, the ability to superconduct when heavily doped with boron has attracted much interest in the carbon community. When considering the nanocrystalline boron doped system, the reduced dimensionality and confinement effects have led to several intriguing observations most notably, signatures of a mixed superconducting phase. Here we present ultra-high-resolution transmission electron microscopy imaging of the grain boundary and demonstrate how the complex microstructure leads to enhanced carrier correlations. We observe hallmark features of spin-orbit coupling (SOC) manifested as the weak anti-localization effect. The enhanced SOC is believed to result from a combination of inversion symmetry breaking at the grain boundary interfaces along with antisymmetric confinement potential between grains, inducing a Rashba-type SOC. From a pronounced zero bias peak in the differential conductance, we demonstrate signatures of a triplet component believed to result from spin mixing caused by tunneling of singlet Cooper pairs through such Rashba-SOC grain boundary junctions.

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