论文标题
平面超导体 - 轴导剂连接处的大二级约瑟夫森效应
Large Second-Order Josephson Effect in Planar Superconductor-Semiconductor Junctions
论文作者
论文摘要
我们研究了使用纳米线阴影技术制造的Al/Inas-Quantum井井井约瑟夫森连接的电流相关关系。根据几个实验,我们得出结论,该交界处表现出异常大的二阶Josephson谐波,即$ \ sin(2φ)$项。首先,超导量子干扰装置(DC平方)显示出半周期性振荡,可通过门电压和磁通量调节。其次,约瑟夫森交界器设备在超流动衍射模式中表现出近量量子的扭结。第三,结合处有半整数夏皮罗的步骤。在SN/INAS量子井设备中观察到类似现象。我们将数据拟合到具有两个组件电流相关的数值模型。包括循环电感在内的分析表明,第二个谐波项的符号为负。观察到的效应的微观起源仍有待理解。我们考虑可以解释一些但不是全部证据的替代解释。
We investigate the current-phase relations of Al/InAs-quantum well planar Josephson junctions fabricated using nanowire shadowing technique. Based on several experiments, we conclude that the junctions exhibit an unusually large second-order Josephson harmonic, the $\sin(2φ)$ term. First, superconducting quantum interference devices (dc-SQUIDs) show half-periodic oscillations, tunable by gate voltages as well as magnetic flux. Second, Josephson junction devices exhibit kinks near half-flux quantum in supercurrent diffraction patterns. Third, half-integer Shapiro steps are present in the junctions. Similar phenomena are observed in Sn/InAs quantum well devices. We perform data fitting to a numerical model with a two-component current phase relation. Analysis including a loop inductance suggests that the sign of the second harmonic term is negative. The microscopic origins of the observed effect remain to be understood. We consider alternative explanations which can account for some but not all of the evidence.