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Error Estimation at the Information Reconciliation Stage of Quantum Key Distribution

E. Kiktenko, A. O. Malyshev, A. A. Bozhedarov, N. Pozhar, M. Anufriev, A. Fedorov·October 13, 2018·DOI: 10.1007/s10946-018-9752-y
Computer ScienceMathematicsPhysics

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Abstract

Quantum key distribution (QKD) offers a practical solution for secure communication between two distinct parties via a quantum channel and an authentic public channel. In this work, we consider different approaches to the quantum bit error rate (QBER) estimation at the information reconciliation stage of the post-processing procedure. For reconciliation schemes employing low-density parity-check (LDPC) codes, we develop a novel syndrome-based QBER estimation algorithm. The algorithm suggested is suitable for irregular LDPC codes and takes into account punctured and shortened bits. Testing our approach in a real QKD setup, we show that an approach combining the proposed algorithm with conventional QBER estimation techniques allows one to improve the accuracy of the QBER estimation.

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