39 citations to https://www.mathnet.ru/rus/ppi2064
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Szymusiak A., “Maximally Informative Ensembles For Sic-Povms in Dimension 3”, J. Phys. A-Math. Theor., 47:44 (2014), 445301
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Wilde M.M. Winter A. Yang D., “Strong Converse For the Classical Capacity of Entanglement-Breaking and Hadamard Channels Via a Sandwiched R,Nyi Relative Entropy”, Commun. Math. Phys., 331:2 (2014), 593–622
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Dall'Arno M., Buscemi F., Ozawa M., “Tight Bounds on Accessible Information and Informational Power”, J. Phys. A-Math. Theor., 47:23 (2014), 235302
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Berta M., Renes J.M., Wilde M.M., “Identifying the Information Gain of a Quantum Measurement”, 2014 IEEE International Symposium on Information Theory (Isit), IEEE International Symposium on Information Theory, IEEE, 2014, 331–335
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Dall'Arno M., D'Ariano G.M., Sacchi M.F., “How Much a Quantum Measurement Is Informative?”, Eleventh International Conference on Quantum Communication, Measurement and Computation (Qcmc), AIP Conference Proceedings, 1633, eds. Schmiedmayer H., Walther P., Amer Inst Physics, 2014, 150–152
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Mario Berta, Joseph M. Renes, Mark M. Wilde, 2014 IEEE International Symposium on Information Theory, 2014, 331
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А. А. Кузнецова, А. С. Холево, “Теоремы кодирования для гибридных каналов”, Теория вероятн. и ее примен., 58:2 (2013), 298–324 ; A. A. Kuznetsova, A. S. Holevo, “Coding theorems for hybrid channels”, Theory Probab. Appl., 58:2 (2014), 264–285
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Alexander S. Holevo, 2013 IEEE International Symposium on Information Theory, 2013, 176
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М. Е. Широков, “Условия совпадения классической пропускной способности и классической пропускной способности с использованием сцепленности квантового канала”, Пробл. передачи информ., 48:2 (2012), 3–20 ; M. E. Shirokov, “Conditions for coincidence of the classical capacity and entanglement-assisted capacity of a quantum channel”, Problems Inform. Transmission, 48:2 (2012), 85–101