Carrad Damon James, Stampfer Lukas, Ols Teins Da Gs, Petersen Christian Emmanuel Noes, Khan Sabbir A, Krogstrup Peter, Jespersen Thomas Sand
Center for Quantum Devices, Niels Bohr Institute, University of Copenhagen, 2100 Copenhagen, Denmark.
Department of Energy Conversion and Storage, Technical University of Denmark, Fysikvej, Building 310, 2800 Kgs. Lyngby, Denmark.
Nano Lett. 2022 Aug 10;22(15):6262-6267. doi: 10.1021/acs.nanolett.2c01840. Epub 2022 Jul 21.
Semiconductor/superconductor hybrids exhibit a range of phenomena that can be exploited for the study of novel physics and the development of new technologies. Understanding the origin of the energy spectrum of such hybrids is therefore a crucial goal. Here, we study Josephson junctions defined by shadow epitaxy on InAsSb/Al nanowires. The devices exhibit gate-tunable supercurrents at low temperatures and multiple Andreev reflections (MARs) at finite voltage bias. Under microwave irradiation, photon-assisted tunneling (PAT) of MARs produces characteristic oscillating sidebands at quantized energies, which depend on MAR order, , in agreement with a recently suggested modification of the classical Tien-Gordon equation. The scaling of the quantized energy spacings with microwave frequency provides independent confirmation of the effective charge, , transferred by the th-order tunneling process. The measurements suggest PAT as a powerful method for assigning the origin of low-energy spectral features in hybrid Josephson devices.
半导体/超导体混合体展现出一系列可用于研究新物理和开发新技术的现象。因此,理解此类混合体的能谱起源是一个关键目标。在此,我们研究通过阴影外延在InAsSb/Al纳米线上定义的约瑟夫森结。这些器件在低温下表现出门控可调的超电流,在有限电压偏置下表现出多次安德列夫反射(MARs)。在微波辐照下,MARs的光子辅助隧穿(PAT)在量子化能量处产生特征性的振荡边带,其取决于MAR阶数, ,这与最近对经典田-戈登方程的修正一致。量子化能量间距随微波频率的缩放提供了对第 阶隧穿过程转移的有效电荷 的独立确认。这些测量表明PAT是确定混合约瑟夫森器件中低能谱特征起源的有力方法。