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This article is cited in 1 scientific paper (total in 1 paper)
DIFFRACTIVE OPTICS, OPTICAL TECHNOLOGIES
Subcarrier wave continuous-variable quantum key distribution with Gaussian modulation: composable security analysis
R. K. Goncharova, A. D. Kiselevab, E. O. Samsonova, V. I. Egorova a ITMO University, Leading Research Center "National Center of Quantum Internet"
b ITMO University, Laboratory of Quantum Processes and Measurements
Abstract:
In this paper, we continue the study of the quantum cryptographic GG02 protocol, performed using the approach based on the subcarrier waves. We modify the scheme via heterodyne detection and perform security analysis for the full trusted hardware noise model in the presence of collective attacks with finite-key effects. It is shown that the system can potentially distribute the key even if the level of losses in the channel is above 9 dB. This result is consistent with the general technical level and comply with modern standards of practical CV-QKD systems. Finally, the system under consideration fully meets the criterion of composability.
Keywords:
continuous variables, subcarrier waves, quantum key distribution
Received: 14.09.2022 Accepted: 14.12.2022
Citation:
R. K. Goncharov, A. D. Kiselev, E. O. Samsonov, V. I. Egorov, “Subcarrier wave continuous-variable quantum key distribution with Gaussian modulation: composable security analysis”, Computer Optics, 47:3 (2023), 374–380
Linking options:
https://www.mathnet.ru/eng/co1136 https://www.mathnet.ru/eng/co/v47/i3/p374
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