Measurement-device-independent multi-party quantum secure direct communication

被引:1
|
作者
Guo, Ran [1 ]
Zhou, Ri-Gui [1 ]
Zhang, Xiao-Xue [1 ]
机构
[1] Shanghai Maritime Univ, Sch Informat Engn, Shanghai 201306, Peoples R China
基金
中国国家自然科学基金;
关键词
Quantum secure direct communication; Measurement-device-independence; Entanglement swapping; Hyperentangled state;
D O I
10.1007/s11128-024-04505-8
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
As one of the most important branches of quantum information science, quantum communication is known for its unconditional security and efficiency. Nevertheless, the practical security of quantum key distribution protocols and quantum secure direct communication protocols is challenged due to the imperfections in experimental devices. Despite significant progress in theoretical and experimental research on the MDI-QSDC Protocol, challenges and unresolved issues remain. For example, further enhancing the scalability and system complexity of the protocol to meet the demands of large-scale quantum networks is necessary. In this paper, we propose a multi-party MDI-QSDC scheme based on multi-degree-of-freedom hyperentangled photons. Compared to the original MDI-QSDC protocol, our protocol allows multiple parties to participate in the information transmission process. For example, for four communicating parties, we can encode the information of three independent degrees of freedom so that each photon of each degree of freedom can transmit 2 bits of information. Moreover, all measurement tasks are performed by the fifth party, which can be untrusted or even completely controlled by eavesdroppers. The protocol is resistant to all possible attacks from imperfect measurement devices. It can eventually be extended to arbitrary degrees of freedom, allowing multiple parties to participate.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Measurement-device-independent quantum communication with an untrusted source
    Xu, Feihu
    PHYSICAL REVIEW A, 2015, 92 (01):
  • [42] Measurement-device-independent quantum communication without encryption
    Niu, Peng-Hao
    Zhou, Zeng-Rong
    Lin, Zai-Sheng
    Sheng, Yu-Bo
    Yin, Liu-Guo
    Long, Gui-Lu
    SCIENCE BULLETIN, 2018, 63 (20) : 1345 - 1350
  • [43] Measurement-device-independent quantum wireless network communication
    Yang, Yong-Li
    Yang, Yu-Guang
    Zhou, Yi-Hua
    Shi, Wei-Min
    Li, Dan
    QUANTUM INFORMATION PROCESSING, 2022, 21 (04)
  • [44] Measurement device–independent quantum secure direct communication with user authentication
    Nayana Das
    Goutam Paul
    Quantum Information Processing, 21
  • [45] Multi-party semi-quantum secure direct communication protocol with cluster states
    Liang-Chao Xu
    Hua-Ying Chen
    Nan-Run Zhou
    Li-Hua Gong
    International Journal of Theoretical Physics, 2020, 59 : 2175 - 2186
  • [46] Multi-party semi-quantum secure direct communication protocol with cluster states
    Xu, Liang-Chao
    Chen, Hua-Ying
    Zhou, Nan-Run
    Gong, Li-Hua
    INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 2020, 59 (07) : 2175 - 2186
  • [47] The Feasible Hyper-encoding Measurement-device-independent Deterministic Secure Quantum Communication Protocol
    Yun, Xing-Long
    Zhou, Lan
    Zhong, Wei
    Du, Ming-Ming
    Sheng, Yu-Bo
    QUANTUM INFORMATION PROCESSING, 2023, 22 (08)
  • [48] The Feasible Hyper-encoding Measurement-device-independent Deterministic Secure Quantum Communication Protocol
    Xing-Long Yun
    Lan Zhou
    Wei Zhong
    Ming-Ming Du
    Yu-Bo Sheng
    Quantum Information Processing, 22
  • [49] A measurement device independent multi-party quantum key agreement protocol with identity authentication
    Li, Guo-Dong
    Cheng, Wen-Chuan
    Wang, Qing-Le
    Liu, Jia-Cheng
    QUANTUM INFORMATION PROCESSING, 2023, 22 (12)
  • [50] A measurement device independent multi-party quantum key agreement protocol with identity authentication
    Guo-Dong Li
    Wen-Chuan Cheng
    Qing-Le Wang
    Jia-Cheng Liu
    Quantum Information Processing, 22