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We present proof-of-principle realizations of algorithmic solutions aimed on post-processing procedure for quantum key distribution systems. The main steps of the procedure are error correction, parameter estimation, and privacy amplification. Authentication of classical public communication channel is also considered.
The research leading to these results has received funding from Ministry of Education and Science of the Russian Federation in the framework of the Federal Program (Agreement 14.582.21.0009, ID RFMEFI58215X0009).
quantum key distribution, error correction, authentication, privacy amplification, information reconciliation, LDPC, blind reconciliation, quantum key distribution, error correction, authentication, privacy amplification, information reconciliation, LDPC, blind reconciliation
quantum key distribution, error correction, authentication, privacy amplification, information reconciliation, LDPC, blind reconciliation, quantum key distribution, error correction, authentication, privacy amplification, information reconciliation, LDPC, blind reconciliation
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