17 citations to https://www.mathnet.ru/rus/jrlr7
-
Somya Rathee, Learning Techniques for the Internet of Things, 2024, 233
-
Patcharapong Treeviriyanupab, Chun-Mei Zhang, “Efficient Integration of Rate-Adaptive Reconciliation with Syndrome-Based Error Estimation and Subblock Confirmation for Quantum Key Distribution”, Entropy, 26:1 (2024), 53
-
Yi Luo, Xi Cheng, Hao-Kun Mao, Qiong Li, “An Overview of Postprocessing in Quantum Key Distribution”, Mathematics, 12:14 (2024), 2243
-
Alain Giresse Tene, Anne Marie Stephanie Kamdjou, “Error correction based artificial neural network in multi-modes CV-QKD with simultaneous type-I and type-II parametric-down conversion entangled photon source”, Optics Communications, 565 (2024), 130681
-
Sergey Gushanskiy, Viktor Potapov, Natalia Korobeynikova, 2023 International Russian Automation Conference (RusAutoCon), 2023, 88
-
Anton Trushechkin, “Security of quantum key distribution with detection-efficiency mismatch in the multiphoton case”, Quantum, 6 (2022), 771–29
-
Nikolay Borisov, Ivan Petrov, Andrey Tayduganov, “Asymmetric Adaptive LDPC-Based Information Reconciliation for Industrial Quantum Key Distribution”, Entropy, 25:1 (2022), 31
-
zahra eskandari, mohammad rezaee, “Error Reconciliation based on Integer Linear Programming in Quantum Key
Distribution”, jist, 9:36 (2021), 51
-
Yu Guo, Chaohui Gao, Dong Jiang, Lijun Chen, “100 Mbps Reconciliation for Quantum Key Distribution Using a Single Graphics Processing Unit”, SN COMPUT. SCI., 2:2 (2021)
-
Д. А. Кронберг, “Об уязвимостях квантовой криптографии на геометрически однородных когерентных состояниях”, Квантовая электроника, 51:10 (2021), 928–937 ; D. A. Kronberg, “Vulnerabilities of quantum cryptography on geometrically uniform coherent states”, Quantum Electron., 51:10 (2021), 928–937