76 citations to https://www.mathnet.ru/rus/cmph1
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Huihui Li, Nan Li, Shunlong Luo, “Probing correlations in two-mode bosonic fields via Gaussian noise channels”, Phys. Rev. A, 107:6 (2023)
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Lars Dammeier, Reinhard F. Werner, “Quantum-Classical Hybrid Systems and their Quasifree Transformations”, Quantum, 7 (2023), 1068
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Юэ Чжан, Шунь Лун Ло, “Переход от функции Вигнера к $s$-упорядоченному распределению в фазовом пространстве посредством канала с гауссовским шумом”, ТМФ, 210:3 (2022), 485–504 ; Yue Zhang, Shunlong Luo, “From the Wigner function to the $s$-ordered phase-space distribution via a Gaussian noise channel”, Theoret. and Math. Phys., 210:3 (2022), 425–441
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А. С. Холево, “Логарифмическое неравенство Соболева и квантовые гауссовcкие максимизаторы”, УМН, 77:4(466) (2022), 205–206 ; A. S. Holevo, “Logarithmic Sobolev inequality and Hypothesis of Quantum Gaussian Maximizers”, Russian Math. Surveys, 77:4 (2022), 766–768
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Zuhra Amiri, Boulat A. Bash, Janis Notzel, 2022 IEEE Globecom Workshops (GC Wkshps), 2022, 298
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Francesco Anna Mele, Ludovico Lami, Vittorio Giovannetti, “Restoring Quantum Communication Efficiency over High Loss Optical Fibers”, Phys. Rev. Lett., 129:18 (2022)
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Shi-Yuan Wang, Tuna Erdogan, Matthieu Bloch, 2022 IEEE International Symposium on Information Theory (ISIT), 2022, 318
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Francesco Anna Mele, Ludovico Lami, Vittorio Giovannetti, “Quantum optical communication in the presence of strong attenuation noise”, Phys. Rev. A, 106:4 (2022)
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Sergey Filippov, Alena Termanova, “Superior Resilience of Non-Gaussian Entanglement against Local Gaussian Noises”, Entropy, 25:1 (2022), 75
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Haowei Shi, Quntao Zhuang, “Computable limits of optical multiple-access communications”, Phys. Rev. A, 105:2 (2022)