NEST, Istituto Nanoscienze-CNR and Scuola Normale Superiore, I-56127 Pisa, Italy.
Nanotechnology. 2013 Jun 21;24(24):245201. doi: 10.1088/0957-4484/24/24/245201. Epub 2013 May 17.
We report the realization of a ballistic Josephson interferometer. The interferometer is made from a quantum ring etched in a nanofabricated two-dimensional electron gas confined in an InAs-based heterostructure laterally contacted to superconducting niobium leads. The Josephson current flowing through the structure shows oscillations with h/e flux periodicity when threading the loop with a perpendicular magnetic field. This periodicity, in sharp contrast with the h/2e one observed in conventional dc superconducting quantum interference devices, confirms the ballistic nature of the device in agreement with theoretical predictions. This system paves the way for the implementation of interferometric Josephson π-junctions, and for the investigation of Majorana fermions.
我们报告了弹道约瑟夫森干涉仪的实现。该干涉仪由在纳米制造的二维电子气体中刻蚀的量子环制成,该二维电子气体被限制在侧向接触超导铌引线的 InAs 基异质结构中。当在环中穿过垂直磁场时,流过该结构的约瑟夫森电流显示出具有 h/e 磁通周期性的振荡。与在传统直流超导量子干涉器件中观察到的 h/2e 周期性形成鲜明对比,这一周期性证实了该器件的弹道性质,与理论预测一致。该系统为实现干涉约瑟夫森 π 结以及研究马约拉纳费米子铺平了道路。