235 citations to https://www.mathnet.ru/rus/rm91
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Kribs D.W., Levick J., Olfert K., Pereira R., Rahaman M., “Nullspaces of Entanglement Breaking Channels and Applications”, J. Phys. A-Math. Theor., 54:10 (2021), 105303
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Zhang Yu., Luo Sh., “Quantifying Decoherence of Gaussian Noise Channels”, J. Stat. Phys., 183:2 (2021), 19
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Fang K., Fawzi H., “Geometric Renyi Divergence and Its Applications in Quantum Channel Capacities”, Commun. Math. Phys., 384:3 (2021), 1615–1677
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Ciampini M.A., Cuevas A., Mataloni P., Macchiavello Ch., Sacchi M.F., “Experimental Lower Bounds to the Classical Capacity of Quantum Channels”, Phys. Rev. A, 103:6 (2021), 062414
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Bhattacharya S.S., Maity A.G., Guha T., Chiribella G., Banik M., “Random-Receiver Quantum Communication”, PRX Quantum, 2:2 (2021), 020350
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I. M. Arbekov, S. N. Molotkov, I. V. Sinil'shchikov, “A Simple Heuristic Derivation of Shannon's Formula for a Communication Channel with Continuous Variables in the Quantum Case”, J. Exp. Theor. Phys., 132:3 (2021), 362
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S. N. Molotkov, “Side Channels of Information Leakage in Quantum Cryptography: Nonstrictly Single-Photon States, Different Quantum Efficiencies of Detectors, and Finite Transmitted Sequences”, J. Exp. Theor. Phys., 133:3 (2021), 272
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I M Arbekov, S N Molotkov, “Shannon unicity distance, ε-secrecy criterion and Holevo information in quantum cryptography”, Laser Phys. Lett., 18:1 (2021), 015205
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Pienaar J., “Quantum Causal Models Via Quantum Bayesianism”, Phys. Rev. A, 101:1 (2020), 012104
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Molotkov S.N., “Trojan Horse Attacks, Decoy State Method, and Side Channels of Information Leakage in Quantum Cryptography”, J. Exp. Theor. Phys., 130:6 (2020), 809–832