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Quantum private query protocol based on counterfactual quantum key distribution with noiseless attack

  • Dongmei Liu,
  • Jian Li,
  • Xiubo Chen,
  • Chongqiang Ye,
  • Zhuo Wang

摘要

Most of the previous quantum private query protocols are based on the BB84 key distribution type and generally use a method that wastes most quantum resources to complete security detection. In order to save resources, this paper proposes a noiseless counterfactual quantum private query protocol with high efficiency. This protocol improves the counterfactual quantum key distribution protocol proposed by Rao and Srikanth (Phys Rev A 104:022424, 2021. https://doi.org/10.1103/PhysRevA.104.022424). The communicating parties randomly select quantum bits with probability f to perform flipping to complete the quantum private query. The detector at the sending end receives the counterfactual bit, which we use for security detection; the detector at the receiving end is called a non-counterfactual bit, which is combined with random bit flipping to realize key transmission, followed by traditional post-processing and private query. Finally, when \(f=0.5\) f = 0.5 , the response probability (keys rate) of the non-counterfactual detector at the receiving end can reach a minimum value of 0.5.