Coraiola Marco, Svetogorov Aleksandr E, Haxell Daniel Z, Sabonis Deividas, Hinderling Manuel, Ten Kate Sofieke C, Cheah Erik, Krizek Filip, Schott Rüdiger, Wegscheider Werner, Cuevas Juan Carlos, Belzig Wolfgang, Nichele Fabrizio
IBM Research Europe─Zurich, 8803 Rüschlikon, Switzerland.
Fachbereich Physik, Universität Konstanz, D-78457 Konstanz, Germany.
ACS Nano. 2024 Mar 26;18(12):9221-9231. doi: 10.1021/acsnano.4c01642. Epub 2024 Mar 15.
We investigate the direction-dependent switching current in a flux-tunable four-terminal Josephson junction defined in an InAs/Al two-dimensional heterostructure. The device exhibits the Josephson diode effect with switching currents that depend on the sign of the bias current. The superconducting diode efficiency, reaching a maximum of |η| ≈ 34%, is widely tunable─both in amplitude and sign─as a function of magnetic fluxes and gate voltages. Our observations are supported by a circuit model of three parallel Josephson junctions with nonsinusoidal current-phase relation. With respect to conventional Josephson interferometers, phase-tunable multiterminal Josephson junctions enable large diode efficiencies in structurally symmetric devices, where local magnetic fluxes generated on the chip break both time-reversal and spatial symmetries. Our work presents an approach for developing Josephson diodes with wide-range tunability that do not rely on exotic materials.
我们研究了在InAs/Al二维异质结构中定义的磁通可调四端约瑟夫森结中的方向依赖开关电流。该器件表现出约瑟夫森二极管效应,其开关电流取决于偏置电流的符号。超导二极管效率最高可达|η|≈34%,并且作为磁通量和栅极电压的函数,在幅度和符号上都具有广泛的可调性。我们的观察结果得到了具有非正弦电流-相位关系的三个并联约瑟夫森结的电路模型的支持。相对于传统的约瑟夫森干涉仪,相位可调多端约瑟夫森结能够在结构对称的器件中实现大的二极管效率,其中芯片上产生的局部磁通量打破了时间反演对称性和空间对称性。我们的工作提出了一种开发具有宽范围可调性且不依赖于奇异材料的约瑟夫森二极管的方法。