High-dimensional coherent one-way quantum key distribution

被引:0
|
作者
Sulimany, Kfir [1 ]
Pelc, Guy [1 ]
Dudkiewicz, Rom [2 ]
Korenblit, Simcha [1 ]
Eisenberg, Hagai S. [1 ]
Bromberg, Yaron [1 ]
Ben-Or, Michael [2 ]
机构
[1] Hebrew Univ Jerusalem, Racah Inst Phys, Jerusalem, Israel
[2] Hebrew Univ Jerusalem, Sch Comp Sci & Engn, Jerusalem, Israel
基金
以色列科学基金会;
关键词
CRYPTOGRAPHY; ENTANGLEMENT; SECURE;
D O I
10.1038/s41534-025-00965-7
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
High-dimensional quantum key distribution (QKD) offers secure communication with key rates that surpass those of QKD protocols utilizing two-dimensional encoding. However, existing high-dimensional QKD protocols require additional experimental resources, such as multiport interferometers and multiple detectors, thereby increasing the cost of high-dimensional systems and limiting their use. We introduce and analyze a high-dimensional QKD protocol that requires only standard two-dimensional hardware. We provide security analysis against individual and coherent attacks, establishing upper and lower bounds on the secure key rates. We tested our protocol on a standard two-dimensional QKD system over a 40 km fiber link, achieving a twofold increase in secure key rate compared to the standard two-dimensional coherent one-way protocol, without any hardware modifications. This work offers a significant improvement in the performance of already deployed QKD systems through simple software updates and holds broad applicability across various QKD schemes, making high-dimensional QKD practical for widespread use.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] High-dimensional quantum key distribution with statistical and intensity fluctuations
    Wang, Yang
    Gan, Ya-Hui
    FIBER AND INTEGRATED OPTICS, 2020, 39 (04) : 169 - 184
  • [42] Practical High-Dimensional Quantum Key Distribution with Decoy States
    Bunandar, Darius
    Zhang, Zheshen
    Shapiro, Jeffrey H.
    Englund, Dirk R.
    2015 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2015,
  • [43] Upper Security Bounds for Coherent-One-Way Quantum Key Distribution
    Gonzalez-Payo, Javier
    Trenyi, Robert
    Wang, Weilong
    Curty, Marcos
    PHYSICAL REVIEW LETTERS, 2020, 125 (26)
  • [44] Modulator-Free Coherent-One-Way Quantum Key Distribution
    Roberts, G. L.
    Lucamarini, M.
    Dynes, J. F.
    Savory, S. J.
    Yuan, Z. L.
    Shields, A. J.
    LASER & PHOTONICS REVIEWS, 2017, 11 (04)
  • [45] Simple security proof of coherent-one-way quantum key distribution
    Gao, Rui-Qi
    Xie, Yuan-Mei
    Gu, Jie
    Liu, Wen-Bo
    Weng, Chen-Xun
    Li, Bing-Hong
    Yin, Hua-Lei
    Chen, Zeng-Bing
    OPTICS EXPRESS, 2022, 30 (13) : 23783 - 23795
  • [46] High-dimensional one-way quantum computation operations with on-chip optical d-level cluster states
    Reimer, Christian
    Kues, Michael
    Sciara, Stefania
    Roztocki, Piotr
    Islam, Mehedi
    Cortes, Luis Romero
    Zhang, Yanbing
    Fischer, Bennet
    Loranger, Sebastien
    Kashyap, Raman
    Cino, Alfonso
    Chu, Sai T.
    Little, Brent E.
    Moss, David J.
    Caspani, Lucia
    Munro, William J.
    Azana, Jose
    Morandotti, Roberto
    2019 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2019,
  • [47] High-Dimensional Quantum Key Distribution by a Spin-Orbit Microlaser
    Zhang, Yichi
    Zhao, Haoqi
    Wu, Tianwei
    Gao, Zihe
    Ge, Li
    Feng, Liang
    PHYSICAL REVIEW X, 2025, 15 (01):
  • [48] Time–energy high-dimensional one-side device-independent quantum key distribution
    包海泽
    鲍皖苏
    汪洋
    陈瑞柯
    马鸿鑫
    周淳
    李宏伟
    Chinese Physics B, 2017, (05) : 64 - 69
  • [49] A Necessary Condition for the Security of Coherent-One-Way Quantum Key Distribution Protocol
    Mafu, Mhlambululi
    Marais, Adriana
    Petruccione, Francesco
    APPLIED MATHEMATICS & INFORMATION SCIENCES, 2014, 8 (06): : 2769 - 2773
  • [50] Tight finite-key analysis for generalized high-dimensional quantum key distribution
    Wang, Rong
    Yin, Zhen-Qiang
    Liu, Hang
    Wang, Shuang
    Chen, Wei
    Guo, Guang-Can
    Han, Zheng-Fu
    PHYSICAL REVIEW RESEARCH, 2021, 3 (02):