Division of Solid State Physics, Lund University, P.O. Box 118, S-221 00 Lund, Sweden.
Nano Lett. 2012 Jan 11;12(1):228-33. doi: 10.1021/nl203380w. Epub 2011 Dec 13.
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the development of high performance nanoelectronics and quantum information processing and communication devices and for the studies of new physical phenomena in solid state systems. Here, we report on measurements of a superconductor-normal conductor-superconductor junction device fabricated from an InSb nanowire with aluminum-based superconducting contacts. The measurements show a proximity-induced supercurrent flowing through the InSb nanowire segment with a critical current tunable by a gate in the current bias configuration and multiple Andreev reflection characteristics in the voltage bias configuration. The temperature dependence and the magnetic field dependence of the critical current and the multiple Andreev reflection characteristics of the junction are also studied. Furthermore, we extract the excess current from the measurements and study its temperature and magnetic field dependences. The successful observation of the superconductivity in the InSb nanowire-based Josephson junction device indicates that InSb nanowires provide an excellent material system for creating and observing novel physical phenomena such as Majorana fermions in solid-state systems.
外延生长的高质量半导体 InSb 纳米线是新兴的材料体系,可用于开发高性能的纳米电子学和量子信息处理与通信器件,并用于研究固态系统中的新物理现象。在这里,我们报告了一种由具有基于铝的超导接触的 InSb 纳米线制成的超导-正常导体-超导结器件的测量结果。测量结果表明,超导电流通过 InSb 纳米线段流动,在电流偏置配置中,通过栅极可调节临界电流,并且在电压偏置配置中具有多个 Andreev 反射特性。还研究了结的临界电流的温度依赖性和磁场依赖性以及多个 Andreev 反射特性。此外,我们从测量中提取了过剩电流,并研究了其温度和磁场依赖性。在基于 InSb 纳米线的约瑟夫森结器件中成功观察到超导性表明,InSb 纳米线为在固态系统中创造和观察马约拉纳费米子等新物理现象提供了出色的材料体系。