IBM Research - Zurich , Säumerstrasse 4, 8803 Rüschlikon, Switzerland.
ETH Zurich, Integrated Systems Laboratory , Gloriastrasse 35, 8092 Zurich, Switzerland.
Nano Lett. 2017 Apr 12;17(4):2596-2602. doi: 10.1021/acs.nanolett.7b00400. Epub 2017 Mar 27.
Coherent interconnection of quantum bits remains an ongoing challenge in quantum information technology. Envisioned hardware to achieve this goal is based on semiconductor nanowire (NW) circuits, comprising individual NW devices that are linked through ballistic interconnects. However, maintaining the sensitive ballistic conduction and confinement conditions across NW intersections is a nontrivial problem. Here, we go beyond the characterization of a single NW device and demonstrate ballistic one-dimensional (1D) quantum transport in InAs NW cross-junctions, monolithically integrated on Si. Characteristic 1D conductance plateaus are resolved in field-effect measurements across up to four NW-junctions in series. The 1D ballistic transport and sub-band splitting is preserved for both crossing-directions. We show that the 1D modes of a single injection terminal can be distributed into multiple NW branches. We believe that NW cross-junctions are well-suited as cross-directional communication links for the reliable transfer of quantum information as required for quantum computational systems.
量子比特的相干互联仍然是量子信息技术中的一个持续挑战。为实现这一目标而设想的硬件基于半导体纳米线 (NW) 电路,由通过弹道互连连接的单个 NW 器件组成。然而,在 NW 交叉点处保持敏感的弹道传导和限制条件是一个非平凡的问题。在这里,我们超越了单个 NW 器件的表征,并在 Si 上单片集成的 InAs NW 交叉结中展示了弹道一维 (1D) 量子输运。在多达四个 NW 结串联的场效应测量中解析出特征性的 1D 电导平台。1D 弹道传输和子带分裂在两个交叉方向都得到了保留。我们表明,单个注入端子的 1D 模式可以分布到多个 NW 分支中。我们相信,NW 交叉结非常适合作为量子计算系统所需的量子信息可靠传输的交叉方向通信链路。