17 citations to https://www.mathnet.ru/rus/jrlr7
  1. Somya Rathee, Learning Techniques for the Internet of Things, 2024, 233  crossref
  2. 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  crossref
  3. Yi Luo, Xi Cheng, Hao-Kun Mao, Qiong Li, “An Overview of Postprocessing in Quantum Key Distribution”, Mathematics, 12:14 (2024), 2243  crossref
  4. 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  crossref
  5. Sergey Gushanskiy, Viktor Potapov, Natalia Korobeynikova, 2023 International Russian Automation Conference (RusAutoCon), 2023, 88  crossref
  6. Anton Trushechkin, “Security of quantum key distribution with detection-efficiency mismatch in the multiphoton case”, Quantum, 6 (2022), 771–29  mathnet  crossref
  7. Nikolay Borisov, Ivan Petrov, Andrey Tayduganov, “Asymmetric Adaptive LDPC-Based Information Reconciliation for Industrial Quantum Key Distribution”, Entropy, 25:1 (2022), 31  crossref
  8. zahra eskandari, mohammad rezaee, “Error Reconciliation based on Integer Linear Programming in Quantum Key Distribution”, jist, 9:36 (2021), 51  crossref
  9. 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)  crossref
  10. Д. А. Кронберг, “Об уязвимостях квантовой криптографии на геометрически однородных когерентных состояниях”, Квантовая электроника, 51:10 (2021), 928–937  mathnet  isi  scopus; D. A. Kronberg, “Vulnerabilities of quantum cryptography on geometrically uniform coherent states”, Quantum Electron., 51:10 (2021), 928–937  mathnet  crossref
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