Research progress of material, physics, and device of topological superconductors for quantum computing

被引:0
|
作者
Jiang D. [1 ]
Yu D.-Y. [1 ]
Zheng Z. [1 ]
Cao X.-C. [1 ]
Lin Q. [1 ]
Liu W.-M. [1 ,2 ]
机构
[1] School of Science, Institute for Frontiers and Interdisciplinary Sciences, Zhejiang University of Technology, Hangzhou
[2] Institute of Physics, Chinese Academy of Sciences, Beijing
来源
Wuli Xuebao/Acta Physica Sinica | 2022年 / 71卷 / 16期
基金
中国国家自然科学基金;
关键词
quantum computing; topological superconductor;
D O I
10.7498/APS.71.20220596
中图分类号
学科分类号
摘要
Since the physical limit of Moore's law is being approached, many alternative computing methods have been proposed, among which quantum computing is the most concerned and widely studied. Owing to the non closeability of quantum system, the uncontrollable external factors will lead to quantum dissipation and decoherence. In order to avoid the decoherence of quantum superposition state, the fabrication of robust quantum bits has become one of the key factors. Majorana zero mode (MZM) is a quasi-particle emerging in the topological and superconducting hybrid system. It has non-Abelian statistical properties. Therefore, the topological qubit constructed by MZM has natural robustness to quantum decoherence. Despite the arduous exploration by various experimental groups, the experimental verification of MZM is still lacking. This paper reviews the history and main technical routes of quantum computing, focusing on the theory of topological superconductors, observable experimental phenomena, and the latest experimental progress. Furthermore we discuss and analyze the present status of the topological superconductor research. Finally, we prospect the future experiments and applications of topological superconductors in quantum computing. © 2022 中国物理学会 Chinese Physical Society.
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共 191 条
  • [1] Park J, Found. Phys, 1, (1970)
  • [2] Wootters W, Zurek W, Nature, 299, (1982)
  • [3] Bennett C, IBM J. Res. Dev, 17, (1973)
  • [4] Benioff P, J. Stat. Phys, 22, (1980)
  • [5] Manin Y I, Sov. Radio, (1980)
  • [6] Deutsch D, Jozsa R, Proc. R. Soc. London, Ser. A, 439, (1992)
  • [7] Bennett C H, Brassard G, Crepeau C, Jozsa R, Peres A, Wootters W K, Phys. Rev. Lett, 70, (1993)
  • [8] Shor P W, Proceedings 35th Annual Symposium on Foundations of Computer Science Santa Fe, (1994)
  • [9] Monroe C, Meekhof D M, King B E, Itano W M, Wineland D J, Phys. Rev. Lett, 75, (1995)
  • [10] Divincenzo D P, Mesoscopic Electron Transport NATO ASI Series p345, (1997)