English

Asynchronous measurement-device-independent quantum digital signatures

Quantum Physics 2024-07-16 v1

Abstract

Quantum digital signatures (QDSs), which distribute and measure quantum states by key generation protocols and then sign messages via classical data processing, are a key area of interest in quantum cryptography. However, the practical implementation of a QDS network has many challenges, including complex interference technical requirements, linear channel loss of quantum state transmission, and potential side-channel attacks on detectors. Here, we propose an asynchronous measurement-device-independent (MDI) QDS protocol with asynchronous two-photon interference strategy and one-time universal hashing method. The two-photon interference approach protects our protocol against all detector side-channel attacks and relaxes the difficulty of experiment implementation, while the asynchronous strategy effectively reduces the equivalent channel loss to its square root. Compared to previous MDI-QDS schemes, our protocol shows several orders of magnitude performance improvements and doubling of transmission distance when processing multi-bit messages. Our findings present an efficient and practical MDI-QDS scheme, paving the way for large-scale data processing with non-repudiation in quantum networks.

Keywords

Cite

@article{arxiv.2407.08131,
  title  = {Asynchronous measurement-device-independent quantum digital signatures},
  author = {Jing-Wei Bian and Bing-Hong Li and Yuan-Mei Xie and Hua-Lei Yin and Zeng-Bing Chen},
  journal= {arXiv preprint arXiv:2407.08131},
  year   = {2024}
}

Comments

17 pages, 5 figures, accepted by Physical Review A

R2 v1 2026-06-28T17:36:38.705Z