Correlated charge noise and relaxation errors in superconducting qubits

被引:0
|
作者
C. D. Wilen
S. Abdullah
N. A. Kurinsky
C. Stanford
L. Cardani
G. D’Imperio
C. Tomei
L. Faoro
L. B. Ioffe
C. H. Liu
A. Opremcak
B. G. Christensen
J. L. DuBois
R. McDermott
机构
[1] University of Wisconsin-Madison,Department of Physics
[2] Center for Particle Astrophysics,Fermi National Accelerator Laboratory
[3] University of Chicago,Kavli Institute for Cosmological Physics
[4] Stanford University,Department of Physics
[5] INFN Sezione di Roma,Physics Division
[6] Sorbonne Université,undefined
[7] Laboratoire de Physique Théorique et Hautes Energies,undefined
[8] Google Inc,undefined
[9] Lawrence Livermore National Laboratory,undefined
来源
Nature | 2021年 / 594卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
The central challenge in building a quantum computer is error correction. Unlike classical bits, which are susceptible to only one type of error, quantum bits (qubits) are susceptible to two types of error, corresponding to flips of the qubit state about the X and Z directions. Although the Heisenberg uncertainty principle precludes simultaneous monitoring of X- and Z-flips on a single qubit, it is possible to encode quantum information in large arrays of entangled qubits that enable accurate monitoring of all errors in the system, provided that the error rate is low1. Another crucial requirement is that errors cannot be correlated. Here we characterize a superconducting multiqubit circuit and find that charge noise in the chip is highly correlated on a length scale over 600 micrometres; moreover, discrete charge jumps are accompanied by a strong transient reduction of qubit energy relaxation time across the millimetre-scale chip. The resulting correlated errors are explained in terms of the charging event and phonon-mediated quasiparticle generation associated with absorption of γ-rays and cosmic-ray muons in the qubit substrate. Robust quantum error correction will require the development of mitigation strategies to protect multiqubit arrays from correlated errors due to particle impacts.
引用
收藏
页码:369 / 373
页数:4
相关论文
共 50 条
  • [1] Correlated charge noise and relaxation errors in superconducting qubits
    Wilen, C. D.
    Abdullah, S.
    Kurinsky, N. A.
    Stanford, C.
    Cardani, L.
    D'Imperio, G.
    Tomei, C.
    Faoro, L.
    Ioffe, L. B.
    Liu, C. H.
    Opremcak, A.
    Christensen, B. G.
    DuBois, J. L.
    McDermott, R.
    [J]. NATURE, 2021, 594 (7863) : 369 - +
  • [2] Mechanically induced correlated errors on superconducting qubits with relaxation times exceeding 0.4 ms
    Kono, Shingo
    Pan, Jiahe
    Chegnizadeh, Mahdi
    Wang, Xuxin
    Youssefi, Amir
    Scigliuzzo, Marco
    Kippenberg, Tobias J.
    [J]. NATURE COMMUNICATIONS, 2024, 15 (01)
  • [3] Anomalous charge noise in superconducting qubits
    Christensen, B. G.
    Wilen, C. D.
    Opremcak, A.
    Nelson, J.
    Schlenker, F.
    Zimonick, C. H.
    Faoro, L.
    Ioffe, L. B.
    Rosen, Y. J.
    DuBois, J. L.
    Plourde, B. L. T.
    McDermott, R.
    [J]. PHYSICAL REVIEW B, 2019, 100 (14)
  • [4] Phonon downconversion to suppress correlated errors in superconducting qubits
    V. Iaia
    J. Ku
    A. Ballard
    C. P. Larson
    E. Yelton
    C. H. Liu
    S. Patel
    R. McDermott
    B. L. T. Plourde
    [J]. Nature Communications, 13
  • [5] Phonon downconversion to suppress correlated errors in superconducting qubits
    Iaia, V
    Ku, J.
    Ballard, A.
    Larson, C. P.
    Yelton, E.
    Liu, C. H.
    Patel, S.
    McDermott, R.
    Plourde, B. L. T.
    [J]. NATURE COMMUNICATIONS, 2022, 13 (01)
  • [6] Suppressing charge noise decoherence in superconducting charge qubits
    Schreier, J. A.
    Houck, A. A.
    Koch, Jens
    Schuster, D. I.
    Johnson, B. R.
    Chow, J. M.
    Gambetta, J. M.
    Majer, J.
    Frunzio, L.
    Devoret, M. H.
    Girvin, S. M.
    Schoelkopf, R. J.
    [J]. PHYSICAL REVIEW B, 2008, 77 (18)
  • [7] Engineering superconducting qubits to reduce quasiparticles and charge noise
    Pan, Xianchuang
    Zhou, Yuxuan
    Yuan, Haolan
    Nie, Lifu
    Wei, Weiwei
    Zhang, Libo
    Li, Jian
    Liu, Song
    Jiang, Zhi Hao
    Catelani, Gianluigi
    Hu, Ling
    Yan, Fei
    Yu, Dapeng
    [J]. NATURE COMMUNICATIONS, 2022, 13 (01)
  • [8] Engineering superconducting qubits to reduce quasiparticles and charge noise
    Xianchuang Pan
    Yuxuan Zhou
    Haolan Yuan
    Lifu Nie
    Weiwei Wei
    Libo Zhang
    Jian Li
    Song Liu
    Zhi Hao Jiang
    Gianluigi Catelani
    Ling Hu
    Fei Yan
    Dapeng Yu
    [J]. Nature Communications, 13
  • [9] Charge Noise and Overdrive Errors in Dispersive Readout of Charge, Spin, and Majorana Qubits
    Maman, Vahid Derakhshan
    Gonzalez-Zalba, M. F.
    Palyi, Andras
    [J]. PHYSICAL REVIEW APPLIED, 2020, 14 (06):
  • [10] Global relaxation of superconducting qubits
    Ojanen, T.
    Niskanen, A. O.
    Nakamura, Y.
    Abdumalikov, A. A., Jr.
    [J]. PHYSICAL REVIEW B, 2007, 76 (10)