11 citations to https://www.mathnet.ru/rus/epjwc2
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И. Я. Арефьева, “Голография для непертурбативного исследования КТП”, ЭЧАЯ, 51:4 (2020), 533–533 ; I. Ya. Aref'eva, “Holography for Nonperturbative Study of QFT”, Phys. Part. Nucl., 51:4 (2020), 489–496
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Irina Ya. Aref'eva, Alexander Patrushev, Pavel Slepov, “Holographic entanglement entropy in anisotropic background with confinement-deconfinement phase transition”, JHEP, 2020 (2020), 43–59
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I. Ya. Aref'eva, “Holographic Entanglement Entropy for Heavy-Ion Collisions”, Phys. Part. Nucl. Lett., 16:5 (2019), 486–492
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Irina Aref'eva, “Holography for Heavy-Ion Collisions at LHC and NICA. Results of the last two years”, EPJ Web of Conf., 191 (2018), 5010–8
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С. В. Козырев, “Квантовый перенос в вырожденных системах”, Труды МИАН, 301 (2018), 144–154 ; S. V. Kozyrev, “Quantum transport in degenerate systems”, Proc. Steklov Inst. Math., 301 (2018), 134–143
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А. С. Трушечкин, “Нахождение стационарных решений уравнения Линдблада посредством исследования функционала производства энтропии”, Труды МИАН, 301 (2018), 276–286 ; A. S. Trushechkin, “Finding stationary solutions of the Lindblad equation by analyzing the entropy production functional”, Proc. Steklov Inst. Math., 301 (2018), 262–271
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Irina Aref'eva, Kristina Rannu, “Holographic anisotropic background with confinement-deconfinement phase transition”, JHEP, 5 (2018), 206–56
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S. V. Kozyrev, I. V. Volovich, Trends in Biomathematics: Modeling, Optimization and Computational Problems, 2018, 13
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Д. С. Агеев, И. Я. Арефьева, “Пробуждение и скремблинг в процессе голографического нагрева”, ТМФ, 193:1 (2017), 146–161 ; D. S. Ageev, I. Ya. Aref'eva, “Waking and scrambling in holographic heating up”, Theoret. and Math. Phys., 193:1 (2017), 1534–1546
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Irina Aref'eva, “Holography for Heavy Ions Collisions at LHC and NICA”, EPJ Web of Conf., 164 (2017), 1014–20