Frequency-encoded photonic qubits for scalable quantum information processing

被引:201
|
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
  • [11] A Framework for Fully Programmable Frequency-Encoded Quantum Networks Harnessing Multioutput Quantum Pulse Gates
    Folge, Patrick
    Stefszky, Michael
    Brecht, Benjamin
    Silberhorn, Christine
    PRX QUANTUM, 2024, 5 (04):
  • [12] Integrated devices for quantum information and quantum simulation with polarization encoded qubits
    Sansoni, Linda
    Sciarrino, Fabio
    Mataloni, Paolo
    Crespi, Andrea
    Ramponi, Roberta
    Osellame, Roberto
    QUANTUM OPTICS II, 2012, 8440
  • [13] Quantum information processing with frequency-bin qubits: progress, status, and challenges
    Lukens, Joseph M.
    2019 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2019,
  • [14] Towards Photonic Interconnects between Ion Traps for Scalable Quantum Information Processing
    Takahashi, Hiroki
    2020 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2020,
  • [15] Scalable architecture for quantum information processing with superconducting flux qubits based on purely longitudinal interactions
    Billangeon, P. -M.
    Tsai, J. S.
    Nakamura, Y.
    PHYSICAL REVIEW B, 2015, 92 (02):
  • [16] Spectral- and frequency-encoded fluorescence imaging
    Motz, JT
    Yelin, D
    Vakoc, BJ
    Bouma, BE
    Tearney, GJ
    OPTICS LETTERS, 2005, 30 (20) : 2760 - 2762
  • [17] Photonic quantum information processing
    Kok, Pieter
    CONTEMPORARY PHYSICS, 2016, 57 (04) : 526 - 544
  • [18] All-optical frequency-encoded Toffoli gate
    Srivastava S.
    Chaurasiya U.
    Tiwari P.
    Misal A.
    Upadhyay K.K.
    Journal of Optical Communications, 2024, 45 (02) : 203 - 210
  • [19] Quantum information processing with bosonic qubits in circuit QED
    Joshi, Atharv
    Noh, Kyungjoo
    Gao, Yvonne Y.
    QUANTUM SCIENCE AND TECHNOLOGY, 2021, 6 (03):
  • [20] Real-time frequency-encoded spatiotemporal focusing
    Wei, X.
    Shen, Y.
    Jing, J. C.
    Hemphill, A. S.
    Yang, C.
    Xu, S.
    Yang, Z.
    Wang, L., V
    2020 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2020,