15 citations to https://www.mathnet.ru/eng/phra12
  1. Mandeep Kumar, Bhaskar Mondal, “A brief review on Quantum Key Distribution Protocols”, Multimed Tools Appl, 2025  crossref
  2. Marta I. García-Cid, Dileepsai Bodanapu, Alberto Gatto, Paolo Martelli, Vicente Martín, Laura Ortiz, “Experimental implementation of a quantum zero-knowledge proof for user authentication”, Opt. Express, 32:9 (2024), 15955  crossref
  3. Emir Dervisevic, Miroslav Voznak, Miralem Mehic, “Bases selection with pseudo-random functions in BB84 scheme”, Heliyon, 10:1 (2024), e23578  crossref
  4. Dong Pan, Gui-Lu Long, Liuguo Yin, Yu-Bo Sheng, Dong Ruan, Soon Xin Ng, Jianhua Lu, Lajos Hanzo, “The Evolution of Quantum Secure Direct Communication: On the Road to the Qinternet”, IEEE Commun. Surv. Tutorials, 26:3 (2024), 1898  crossref
  5. Aleksey K. Fedorov, “Deploying hybrid quantum-secured infrastructure for applications: When quantum and post-quantum can work together”, Front. Quantum Sci. Technol., 2 (2023)  crossref
  6. Georgi Bebrov, “Higher-rate quantum key expansion scheme”, Quantum Inf Process, 21:6 (2022)  crossref
  7. A. S. Trushechkin, E. O. Kiktenko, D. A. Kronberg, A. K. Fedorov, “Security of the decoy state method for quantum key distribution”, Phys. Usp., 64:1 (2021), 88–102  mathnet  mathnet  crossref  crossref  isi  scopus
  8. Martin Tchoffo, Alain Giresse Tene, “Security and communication distance improvement in decoy states based quantum key distribution using pseudo-random bases choice for photon polarization measurement”, Opt Quant Electron, 53:8 (2021)  crossref
  9. Qidong Jia, Kaiping Xue, Zhonghui Li, Mengce Zheng, David S. L. Wei, Nenghai Yu, “An improved QKD protocol without public announcement basis using periodically derived basis”, Quantum Inf Process, 20:2 (2021)  crossref
  10. A. S. Avanesov, D. A. Kronberg, “Possibilities of using practical limitations of an eavesdropper in quantum cryptography”, Quantum Electron., 50:5 (2020), 454–460  mathnet  mathnet  crossref  isi  scopus
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