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Improved Polar-code-based Efficient Post-processing Algorithm for Quantum Key Distribution

arXiv
Authors: Junbing Fang, Zhengzhong Yi, Jin Li, Zhipeng Liang, Yulin Wu, Wen Lei, Zoe Lin Jiang, Xuan Wang

Year

2021

Paper ID

40445

Status

Preprint

Abstract Read

~2 min

Abstract Words

174

Citations

N/A

Abstract

Combined with one-time pad encryption scheme, quantum key distribution guarantees the unconditional security of communication in theory. However, error correction and privacy amplification in the post-processing phase of quantum key distribution result in high time delay, which limits the final secret key generation rate and the practicability of quantum key distribution systems. To alleviate this limitation, this paper proposes an efficient post-processing algorithm based on polar codes for quantum key distribution. In this algorithm, by analyzing the channel capacity of the main channel and the wiretap channel respectively under the Wyner's wiretap channel model, we design a codeword structure of polar codes, so that the error correction and privacy amplification could be completed synchronously in a single step. Through combining error correction and privacy amplification into one single step, this efficient post-processing algorithm reduces complexity of the system and lower the post-processing delay. Besides, the reliable and secure communicaiton conditions for this algorithm has been given in this paper. Simulation results show that this post-processing algorithm satisfies the reliable and secure communication conditions well.

Why This Paper Matters

  • This paper contributes to the Quantum Cryptography & Security research area in the Quantum Articles archive.
  • It adds a 2021 reference point for readers tracking recent quantum research.
  • Combined with one-time pad encryption scheme, quantum key distribution guarantees the unconditional security of communication in theory.

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