Haxell Daniel Z, Coraiola Marco, Sabonis Deividas, Hinderling Manuel, Ten Kate Sofieke C, Cheah Erik, Krizek Filip, Schott Rüdiger, Wegscheider Werner, Nichele Fabrizio
IBM Research Europe-Zurich, 8803 Rüschlikon, Switzerland.
Laboratory for Solid State Physics, ETH Zürich, 8093 Zürich, Switzerland.
ACS Nano. 2023 Sep 26;17(18):18139-18147. doi: 10.1021/acsnano.3c04957. Epub 2023 Sep 11.
We perform supercurrent and tunneling spectroscopy measurements on gate-tunable InAs/Al Josephson junctions (JJs) in an in-plane magnetic field and report on phase shifts in the current-phase relation measured with respect to an absolute phase reference. The impact of orbital effects is investigated by studying multiple devices with different superconducting lead sizes. At low fields, we observe gate-dependent phase shifts of up to φ = 0.5π, which are consistent with a Zeeman field coupling to highly transmissive Andreev bound states via Rashba spin-orbit interaction. A distinct phase shift emerges at larger fields, concomitant with a switching current minimum and the closing and reopening of the superconducting gap. These signatures of an induced phase transition, which might resemble a topological transition, scale with the superconducting lead size, demonstrating the crucial role of orbital effects. Our results elucidate the interplay of Zeeman, spin-orbit, and orbital effects in InAs/Al JJs, giving improved understanding of phase transitions in hybrid JJs and their applications in quantum computing and superconducting electronics.
我们在面内磁场中对栅极可调谐的 InAs/Al 约瑟夫森结(JJs)进行了超流和隧穿光谱测量,并报告了相对于绝对相位参考测量的电流 - 相位关系中的相移。通过研究具有不同超导引线尺寸的多个器件来研究轨道效应的影响。在低场下,我们观察到高达 φ = 0.5π 的栅极依赖性相移,这与通过 Rashba 自旋 - 轨道相互作用与高透射率安德烈夫束缚态耦合的塞曼场一致。在较大场中出现明显的相移,伴随着开关电流最小值以及超导能隙的关闭和重新打开。这种诱导相变的特征(可能类似于拓扑相变)与超导引线尺寸成比例,证明了轨道效应的关键作用。我们的结果阐明了 InAs/Al JJs 中塞曼、自旋 - 轨道和轨道效应之间的相互作用,有助于更好地理解混合 JJ 中的相变及其在量子计算和超导电子学中的应用。