论文标题
拓扑超导异质结构中的竞争能量尺度
Competing energy scales in topological superconducting heterostructures
论文作者
论文摘要
人工设计的拓扑超导性已成为创建Majorana模式,异国情调的准颗粒的可行途径,这些途径对拓扑量子计算方案中的存储和操纵信息产生了巨大的期望。实现其实现的基本成分是旋转的非脱位金属状态,靠近S波超导体。在这种情况下,近年来已经对具有相当大的自旋轨道耦合的材料近端诱导的超导性进行了大量研究。尽管有令人信服的证据表明确实可以引起超导性,但很难阐明其拓扑性质。在这项工作中,我们通过将超导率(NB)逐渐引入具有强旋转轨道耦合(PT)和3D拓扑表面状态(BI2TE3)的金属(BI2TE3)来系统地设计人工拓扑超导体。通过对S波超导NB和接近耦合的NB/PT和NB/BI2TE3中超导涡旋特征的纵向研究,我们检测到与拓扑表面状态的存在直接相关的零偏置峰的出现。在一个详细的理论模型的支持下,我们的结果在竞争能源趋势方面合理化了,发现对小型Pap分隔Mailigap和琐碎模式的大小施加了上限,其大小最终与基本材料属性有关。
Artificially engineered topological superconductivity has emerged as a viable route to create Majorana modes, exotic quasiparticles which have raised great expectations for storing and manipulating information in topological quantum computational schemes. The essential ingredients for their realization are spin non-degenerate metallic states proximitized to an s-wave superconductor. In this context, proximity-induced superconductivity in materials with a sizable spin-orbit coupling has been heavily investigated in recent years. Although there is convincing evidence that superconductivity may indeed be induced, it has been difficult to elucidate its topological nature. In this work, we systematically engineer an artificial topological superconductor by progressively introducing superconductivity (Nb) into metals with strong spin-orbital coupling (Pt) and 3D topological surface states (Bi2Te3). Through a longitudinal study of the character of superconducting vortices within s-wave superconducting Nb and proximity-coupled Nb/Pt and Nb/Bi2Te3, we detect the emergence of a zero-bias peak that is directly linked to the presence of topological surface states. Supported by a detailed theoretical model, our results are rationalized in terms of competing energy trends which are found to impose an upper limit to the size of the minigap separating Majorana and trivial modes, its size being ultimately linked to fundamental materials properties.