论文标题
平面约瑟夫森连接处拓扑相变的签名
Signatures of a topological phase transition in a planar Josephson junction
论文作者
论文摘要
越来越多的工作表明,使用超导杂种材料制造的平面约瑟夫森连接处为一维拓扑超导性提供了高度可控的途径。在实验对照中,有平面磁场,整个连接的相位差,以及由静电栅电压设置的载体密度。在这里,我们研究了平面约瑟夫森连接,其基于外延inas/al异构结构的改进设计,该结构嵌入了超导环中,并在交界处的两端都用集成的量子点触点(QPC)探测。对于特定的平面场和门电压范围,观察到超导间隙的闭合和重新打开,以及在缝隙重新打开时出现的零偏置电导峰(ZBCP)。与简单的理论模型的一致性支持拓扑相变的解释。虽然差距的封闭和重新开放通常在交界处的两端一起出现,但ZBCP的高度,形状甚至存在通常在末端之间有所不同,这可能是由于偶数和耦合变化与局部探针的变化所致。
A growing body of work suggests that planar Josephson junctions fabricated using superconducting hybrid materials provide a highly controllable route toward one-dimensional topological superconductivity. Among the experimental controls are in-plane magnetic field, phase difference across the junction, and carrier density set by electrostatic gate voltages. Here, we investigate planar Josephson junctions with an improved design based on an epitaxial InAs/Al heterostructure, embedded in a superconducting loop, probed with integrated quantum point contacts (QPCs) at both ends of the junction. For particular ranges of in-plane field and gate voltages, a closing and reopening of the superconducting gap is observed, along with a zero-bias conductance peak (ZBCP) that appears upon reopening of the gap. Consistency with a simple theoretical model supports the interpretation of a topological phase transition. While gap closings and reopenings generally occurred together at the two ends of the junction, the height, shape, and even presence of ZBCPs typically differed between the ends, presumably due to disorder and variation of couplings to local probes.