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Leveraging the hardness of dihedral coset problem for quantum cryptography

  • Xingyu Yan
  • , Lize Gu*
  • , Jingwen Suo
  • , Licheng Wang
  • *此作品的通讯作者
  • Beijing University of Posts and Telecommunications

科研成果: 期刊稿件文章同行评审

摘要

The dihedral coset problem (DCP) that comes from the hidden subgroup problem over dihedral group is one of the fundamental problems in quantum computation, and its hardness has become a promising cryptographic assumption of post quantum cryptography. In this work, we carry out a quantum cryptographic scheme based on dihedral coset states, which is a novel quantum cryptography that not only exploits the principles of quantum physics but also depends on the post-quantum hardness of DCPNℓ, where ℓ is the number of samples of DCP states and N is the modulus. Specifically, we propose a bipartite quantum key agreement protocol based on dihedral coset states, and by using it we demonstrate a quantum secure communication scenario that ⌊ ℓ/ 4 ⌋ bits of information can be transmitted securely. Finally, we discuss the security analysis of our proposal under the optimal measurement attack and show that the proposal can achieve the maximum secrecy capacity with information-theoretic security under the constraint of m= Θ(log N- 4) for the large N, where m denotes the number of DCP states transmitted in the quantum channel.

源语言英语
文章编号308
期刊Quantum Information Processing
21
9
DOI
出版状态已出版 - 9月 2022

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