19 citations to https://www.mathnet.ru/rus/phra33
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Д. А. Кронберг, “О структуре постселективных преобразований квантовых состояний”, Труды МИАН, 324 (2024), 132–143 ; D. A. Kronberg, “On the Structure of Postselective Transformations of Quantum States”, Proc. Steklov Inst. Math., 324 (2024), 123–134
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Д. А. Кронберг, “Уязвимость квантовой криптографии с фазово-временны́м кодированием в условиях затухания”, ТМФ, 214:1 (2023), 140–152 ; D. A. Kronberg, “Vulnerability of quantum cryptography with phase–time coding under attenuation conditions”, Theoret. and Math. Phys., 214:1 (2023), 121–131
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A. S. Avanesov, D. A. Kronberg, “On postselective modifications of quantum observables”, Lobachevskii J. Math., 44:6 (2023), 1980–1989
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Timur Klevtsov, Dmitry Kronberg, “Assisted postselective quantum transformations and an improved photon number splitting attack strategy”, Mathematics, 11:24 (2023), 4973–11
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Aleksei D. Kodukhov, Valeria A. Pastushenko, Nikita S. Kirsanov, Dmitry A. Kronberg, Markus Pflitsch, Valerii M. Vinokur, “Boosting Quantum Key Distribution via the End-to-End Loss Control”, Cryptography, 7:3 (2023), 38
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D. A. Kronberg, “Modification of Quantum Measurements by Mapping onto Quantum States and Classical Outcomes”, Lobachevskii J. Math., 43:7 (2022), 1663–1668
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Yuan Tian, Jian Li, Chongqiang Ye, Chaoyang Li, “Multi-party semi-quantum key distribution protocol based on hyperentangled Bell states”, Front. Phys., 10 (2022)
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D. Babukhin, D. Kronberg, D. Sych, “Explicit attacks on the Bennett-Brassard 1984 protocol with partially distinguishable photons”, Phys. Rev. A, 106 (2022), 42403–9
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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
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Róbert Trényi, Marcos Curty, “Zero-error attack against coherent-one-way quantum key distribution”, New J. Phys., 23:9 (2021), 093005