Frequency-encoded photonic qubits for scalable quantum information processing

被引:191
|
作者
Lukens, Joseph M. [1 ]
Lougovski, Pavel [1 ]
机构
[1] Oak Ridge Natl Lab, Quantum Informat Sci Grp, Oak Ridge, TN 37831 USA
来源
OPTICA | 2017年 / 4卷 / 01期
关键词
WAVE-FORM GENERATION; ENTANGLED PHOTONS; OPTICAL-COMPONENT; KEY DISTRIBUTION; RING-RESONATOR; PULSE SHAPER; CHIP; AMPLITUDE; FABRICATION; MODULATORS;
D O I
10.1364/OPTICA.4.000008
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Among the objectives for large-scale quantum computation is the quantum interconnect: a device that uses photons to interface qubits that otherwise could not interact. However, the current approaches require photons indistinguishable in frequency-a major challenge for systems experiencing different local environments or of different physical compositions altogether. Here, we develop an entirely new platform that actually exploits such frequency mismatch for processing quantum information. Labeled "spectral linear optical quantum computation" (spectral LOQC), our protocol offers favorable linear scaling of optical resources and enjoys an unprecedented degree of parallelism, as an arbitrary N-qubit quantum gate may be performed in parallel on multiple N-qubit sets in the same linear optical device. Not only does spectral LOQC offer new potential for optical interconnects, but it also brings the ubiquitous technology of high-speed fiber optics to bear on photonic quantum information, making wavelength-configurable and robust optical quantum systems within reach.
引用
收藏
页码:8 / 16
页数:9
相关论文
共 50 条
  • [31] Silicon photonic devices for scalable quantum information applications
    LANTIAN FENG
    MING ZHANG
    JIANWEI WANG
    XIAOQI ZHOU
    XIAOGANG QIANG
    GUANGCAN GUO
    XIFENG REN
    Photonics Research, 2022, 10 (10) : 2239 - 2257
  • [32] Quantum logical operations on encoded qubits
    Zurek, WH
    Laflamme, R
    PHYSICAL REVIEW LETTERS, 1996, 77 (22) : 4683 - 4686
  • [34] Frequency-encoded linear cluster states with coherent Raman photons
    Scerri, Dale
    Malein, Ralph N. E.
    Gerardot, Brian D.
    Gauger, Erik M.
    PHYSICAL REVIEW A, 2018, 98 (02)
  • [35] Scalable quantum optical tap for the distribution of quantum information encoded in entangled fields
    Liu, Nannan
    Liu, Tingting
    Zhang, Qian
    Ou, Z.Y.
    Li, Xiaoying
    Physical Review A, 2024, 110 (05)
  • [36] Frequency-encoded synthetic dimensions for Hamiltonian simulation and topological photonics
    Dutt, Avik
    QUANTUM COMPUTING, COMMUNICATION, AND SIMULATION IV, 2024, 12911
  • [37] Frequency-encoded two-photon excited fluorescence microscopy
    Heuke, Sandro
    Martins, Carla Silva
    Andre, Remi
    Legoff, Loic
    Rigneault, Herve
    OPTICS LETTERS, 2023, 48 (15) : 4113 - 4116
  • [38] Quantum information processing with delocalized qubits under global control
    Fitzsimons, Joseph
    Xiao, Li
    Benjamin, Simon C.
    Jones, Jonathan A.
    PHYSICAL REVIEW LETTERS, 2007, 99 (03)
  • [39] Optically controlled semiconductor spin qubits for quantum information processing
    Yamamoto, Y.
    Ladd, T. D.
    Press, D.
    Clark, S.
    Sanaka, K.
    Santori, C.
    Fattal, D.
    Fu, K. M.
    Hoefling, S.
    Reitzenstein, S.
    Forchel, A.
    PHYSICA SCRIPTA, 2009, T137
  • [40] Spins as qubits: Quantum information processing by nuclear magnetic resonance
    Suter, Dieter
    Mahesh, T. S.
    JOURNAL OF CHEMICAL PHYSICS, 2008, 128 (05):