Encoding a qubit in a trapped-ion mechanical oscillator

被引:0
|
作者
C. Flühmann
T. L. Nguyen
M. Marinelli
V. Negnevitsky
K. Mehta
J. P. Home
机构
[1] ETH Zürich,Institute for Quantum Electronics
来源
Nature | 2019年 / 566卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The stable operation of quantum computers will rely on error correction, in which single quantum bits of information are stored redundantly in the Hilbert space of a larger system. Such encoded qubits are commonly based on arrays of many physical qubits, but can also be realized using a single higher-dimensional quantum system, such as a harmonic oscillator1–3. In such a system, a powerful encoding has been devised based on periodically spaced superpositions of position eigenstates4–6. Various proposals have been made for realizing approximations to such states, but these have thus far remained out of reach7–11. Here we demonstrate such an encoded qubit using a superposition of displaced squeezed states of the harmonic motion of a single trapped 40Ca+ ion, controlling and measuring the mechanical oscillator through coupling to an ancillary internal-state qubit12. We prepare and reconstruct logical states with an average squared fidelity of 87.3 ± 0.7 per cent. Also, we demonstrate a universal logical single-qubit gate set, which we analyse using process tomography. For Pauli gates we reach process fidelities of about 97 per cent, whereas for continuous rotations we use gate teleportation and achieve fidelities of approximately 89 per cent. This control method opens a route for exploring continuous variable error correction as well as hybrid quantum information schemes using both discrete and continuous variables13. The code states also have direct applications in quantum sensing, allowing simultaneous measurement of small displacements in both position and momentum14,15.
引用
收藏
页码:513 / 517
页数:4
相关论文
共 50 条
  • [31] A Trapped-Ion Phonon Laser
    Vahala, K.
    Herrmann, M.
    Knuenz, S.
    Batteiger, V.
    Saathoff, G.
    Haensch, T. W.
    Udem, Th
    2009 CONFERENCE ON LASERS AND ELECTRO-OPTICS AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (CLEO/QELS 2009), VOLS 1-5, 2009, : 1828 - 1829
  • [32] Generation of large coherent states by bang–bang control of a trapped-ion oscillator
    J. Alonso
    F. M. Leupold
    Z. U. Solèr
    M. Fadel
    M. Marinelli
    B. C. Keitch
    V. Negnevitsky
    J. P. Home
    Nature Communications, 7
  • [33] Trapped-ion quantum simulator
    Wineland, D.J.
    Monroe, C.
    Itano, W.M.
    King, B.E.
    Leibfried, D.
    Myatt, C.
    Wood, C.
    Physica Scripta T, T76 : 147 - 151
  • [34] Trapped-ion quantum simulator
    Wineland, DJ
    Monroe, C
    Itano, WM
    King, BE
    Leibfried, D
    Myatt, C
    Wood, C
    PHYSICA SCRIPTA, 1998, T76 : 147 - 151
  • [35] Repeated multi-qubit readout and feedback with a mixed-species trapped-ion register
    V. Negnevitsky
    M. Marinelli
    K. K. Mehta
    H.-Y. Lo
    C. Flühmann
    J. P. Home
    Nature, 2018, 563 : 527 - 531
  • [36] Laser-free trapped-ion entangling gates with simultaneous insensitivity to qubit and motional decoherence
    Sutherland, R. T.
    Srinivas, R.
    Burd, S. C.
    Knaack, H. M.
    Wilson, A. C.
    Wineland, D. J.
    Leibfried, D.
    Allcock, D. T. C.
    Slichter, D. H.
    Libby, S. B.
    PHYSICAL REVIEW A, 2020, 101 (04)
  • [37] Repeated multi-qubit readout and feedback with a mixed-species trapped-ion register
    Negnevitsky, V.
    Marinelli, M.
    Mehta, K. K.
    Lo, H. -Y.
    Fluhmann, C.
    Home, J. P.
    NATURE, 2018, 563 (7732) : 527 - +
  • [38] Crosstalk Suppression in Individually Addressed Two-Qubit Gates in a Trapped-Ion Quantum Computer
    Fang, Chao
    Wang, Ye
    Huang, Shilin
    Brown, Kenneth R.
    Kim, Jungsang
    PHYSICAL REVIEW LETTERS, 2022, 129 (24)
  • [39] Satisfiability Modulo Theories-Based Qubit Mapping for Trapped-Ion Quantum Computing Systems
    Tseng, Wei-Hsiang
    Chang, Yao-Wen
    Jiang, Jie-Hong Roland
    PROCEEDINGS OF THE 2024 INTERNATIONAL SYMPOSIUM ON PHYSICAL DESIGN, ISPD 2024, 2024, : 245 - 253
  • [40] Realizing two-qubit gates through mode engineering on a trapped-ion quantum computer
    Li, Ming
    Nguyen, Nhung H.
    Green, Alaina M.
    Amini, Jason
    Linke, Norbert M.
    Nam, Yunseong
    Physical Review A, 2025, 111 (02)