Electrical control of coherent spin rotation of a single-spin qubit

被引:0
|
作者
Xiaoche Wang
Yuxuan Xiao
Chuanpu Liu
Eric Lee-Wong
Nathan J. McLaughlin
Hanfeng Wang
Mingzhong Wu
Hailong Wang
Eric E. Fullerton
Chunhui Rita Du
机构
[1] University of California,Department of Physics
[2] San Diego,Center for Memory and Recording Research
[3] University of California,Department of Physics
[4] Colorado State University,Department of NanoEngineering
[5] University of California,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Nitrogen vacancy (NV) centers, optically active atomic defects in diamond, have attracted tremendous interest for quantum sensing, network, and computing applications due to their excellent quantum coherence and remarkable versatility in a real, ambient environment. One of the critical challenges to develop NV-based quantum operation platforms results from the difficulty in locally addressing the quantum spin states of individual NV spins in a scalable, energy-efficient manner. Here, we report electrical control of the coherent spin rotation rate of a single-spin qubit in NV-magnet based hybrid quantum systems. By utilizing electrically generated spin currents, we are able to achieve efficient tuning of magnetic damping and the amplitude of the dipole fields generated by a micrometer-sized resonant magnet, enabling electrical control of the Rabi oscillation frequency of NV spins. Our results highlight the potential of NV centers in designing functional hybrid solid-state systems for next-generation quantum-information technologies. The demonstrated coupling between the NV centers and the propagating spin waves harbored by a magnetic insulator further points to the possibility to establish macroscale entanglement between distant spin qubits.
引用
收藏
相关论文
共 50 条
  • [41] Quark correlations and single-spin asymmetries
    Burkardt, M
    CONTINUOUS ADVANCES IN QCD 2004, PROCEEDINGS, 2004, : 64 - 73
  • [42] Single-Spin Magnetomechanics with Levitated Micromagnets
    Gieseler, J.
    Kabcenell, A.
    Rosenfeld, E.
    Schaefer, J. D.
    Safira, A.
    Schuetz, M. J. A.
    Gonzalez-Ballestero, C.
    Rusconi, C. C.
    Romero-Isart, O.
    Lukin, M. D.
    PHYSICAL REVIEW LETTERS, 2020, 124 (16)
  • [43] Single-spin measurement using spin-orbital entanglement
    Ionicioiu, R
    Popescu, AE
    NEW JOURNAL OF PHYSICS, 2005, 7
  • [44] Quantum dynamics in single-spin measurement
    Mancini, S
    Vitali, D
    Moya-Cessa, H
    PHYSICAL REVIEW B, 2005, 71 (05)
  • [45] Single-spin azimuthal asymmetries at HERMES
    Bianchi, N
    JOURNAL OF PHYSICS G-NUCLEAR AND PARTICLE PHYSICS, 2002, 28 (05) : 791 - 800
  • [46] Single-spin asymmetries at two loops
    Benic, Sanjin
    Hatta, Yoshitaka
    Li, Hsiang-nan
    Yang, Dong-Jing
    PHYSICAL REVIEW D, 2019, 100 (09)
  • [47] Nonlinear Single-Spin Spectrum Analyzer
    Kotler, Shlomi
    Akerman, Nitzan
    Glickman, Yinnon
    Ozeri, Roee
    PHYSICAL REVIEW LETTERS, 2013, 110 (11)
  • [48] Tunneling spectrum of single-spin oscillations
    Bulaevskii, LN
    Hruska, M
    Ortiz, G
    NANOTECH 2003, VOL 3, 2003, : 116 - 119
  • [49] Quark correlations and single-spin asymmetries
    Burkardt, M
    NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS, 2005, 141 : 86 - 91
  • [50] Ultrafast coherent control of a hole spin qubit in a germanium quantum dot
    Ke Wang
    Gang Xu
    Fei Gao
    He Liu
    Rong-Long Ma
    Xin Zhang
    Zhanning Wang
    Gang Cao
    Ting Wang
    Jian-Jun Zhang
    Dimitrie Culcer
    Xuedong Hu
    Hong-Wen Jiang
    Hai-Ou Li
    Guang-Can Guo
    Guo-Ping Guo
    Nature Communications, 13