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用于量子器件的选择性区域生长的PbTe-Pb平面约瑟夫森结

Selective-Area-Grown PbTe-Pb Planar Josephson Junctions for Quantum Devices.

作者信息

Li Ruidong, Song Wenyu, Miao Wentao, Yu Zehao, Wang Zhaoyu, Yang Shuai, Gao Yichun, Wang Yuhao, Chen Fangting, Geng Zuhan, Yang Lining, Xu Jiaye, Feng Xiao, Wang Tiantian, Zang Yunyi, Li Lin, Shang Runan, Xue Qikun, He Ke, Zhang Hao

机构信息

State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, China.

Beijing Academy of Quantum Information Sciences, Beijing 100193, China.

出版信息

Nano Lett. 2024 Apr 17;24(15):4658-4664. doi: 10.1021/acs.nanolett.4c00900. Epub 2024 Apr 2.

Abstract

Planar Josephson junctions are predicted to host Majorana zero modes. The material platforms in previous studies are two-dimensional electron gases (InAs, InSb, InAsSb, and HgTe) coupled to a superconductor such as Al or Nb. Here, we introduce a new material platform for planar JJs, the PbTe-Pb hybrid. The semiconductor, PbTe, was grown as a thin film via selective area epitaxy. The Josephson junction was defined by a shadow wall during the deposition of superconductor Pb. Scanning transmission electron microscopy reveals a sharp semiconductor-superconductor interface. Gate-tunable supercurrents and multiple Andreev reflections are observed. A perpendicular magnetic field causes interference patterns of the switching current, exhibiting Fraunhofer-like and SQUID-like behaviors. We further demonstrate a prototype device for Majorana detection wherein phase bias and tunneling spectroscopy are applicable.

摘要

平面约瑟夫森结预计会存在马约拉纳零模。先前研究中的材料平台是与诸如铝或铌等超导体耦合的二维电子气(铟砷、锑化铟、铟砷锑和碲化汞)。在此,我们为平面约瑟夫森结引入一种新的材料平台,即碲化铅 - 铅混合物。半导体碲化铅通过选择性区域外延生长成薄膜。约瑟夫森结在超导铅沉积期间由一个掩膜壁界定。扫描透射电子显微镜揭示了一个清晰的半导体 - 超导体界面。观察到栅极可调谐超电流和多次安德列夫反射。垂直磁场会导致开关电流的干涉图案,呈现出类似夫琅禾费和类似超导量子干涉器件的行为。我们进一步展示了一种用于马约拉纳探测的原型器件,其中相位偏置和隧穿光谱法是适用的。

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