Semi-quantum Key Agreement Protocol Using W States

被引:0
作者
Hui-Min Yi
Ri-Gui Zhou
Rui-Qing Xu
机构
[1] Shanghai Maritime University,School of Information Engineering
来源
International Journal of Theoretical Physics | / 62卷
关键词
Semi-quantum key agreement; W-state; Quantum key distribution; Quantum communication;
D O I
暂无
中图分类号
学科分类号
摘要
In response to the emerging security challenges brought about by advances in quantum technology, traditional key agreement methods are encountering vulnerabilities. To address this issue, We propose a semi-quantum key agreement (SQKA) protocol that utilizes four different forms of the W state, a particle state with strong interparticle entanglement. Classical parties are pre-specified to perform distinct operations on various forms of W states, but these operations are completely random to other parties or potential attackers. Based on the sequence of measurement results transmitted by the quantum square and the pre-defined coding rules, the classical party can infer the operation performed by the other party to achieve identity authentication, and then publish the private key to generate the final key. The analysis of the protocol shows that it can effectively resist common inside and outside attacks, and has the advantage of being more efficient. In summary, by adopting SQKA protocol, we achieve a secure, fair and efficient key negotiation process, providing a feasible solution for cooperation between quantum and classical parties.
引用
收藏
相关论文
共 155 条
  • [21] He ZW(2023)Quantum counterfactuality with identical particles Commun. Theor. Phys. 21 114-undefined
  • [22] Yin ZJ(2022)Single-state multi-party semiquantum key agreement protocol based on multi-particle GHZ entangled states Quantum Inf. Process. 61 104-undefined
  • [23] Yin HL(2022)Multi-party semi-quantum key agreement protocol based on the four-qubit cluster states Int. J. Theor. Phys. 62 196-undefined
  • [24] Chen ZB(2023)Quantum and semi-quantum key distribution in networks Int. J. Theor. Phys. 20 64017-undefined
  • [25] Zhou L(2021)Detector blinding attacks on counterfactual quantum key distribution Quantum Inf. Process. 19 170-undefined
  • [26] Lin J(2023)Overcoming fundamental bounds on quantum conference key agreement Phys. Rev. Appl. 22 1029262-undefined
  • [27] Jing Y(2023)Circular mediated semi-quantum key distribution Quantum Inf. Process. 7 1-undefined
  • [28] Yuan Z(2022)Mediated semi-quantum key distribution with improved efficiency[J] Quantum Sci. Technol. 10 20839-undefined
  • [29] Yin H-L(2008)Semi-quantum key distribution Phys. Rev. A. 4 1-undefined
  • [30] Fu Y(2022)Semi-quantum key distribution with two classical users Front Phys. 10 60-undefined