This work was partially (I.A. and P.S.) supported by the “BASIS” Science Foundation (grant No. 18-1-1-80-4).
Поступила в редакцию: 31.12.2018 Исправленный вариант: 02.04.2019 Принята в печать: 05.04.2019
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Тип публикации:
Статья
Язык публикации: английский
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https://www.mathnet.ru/rus/plb5
Эта публикация цитируется в следующих 41 статьяx:
Irina Ya. Aref'eva, Ali Hajilou, Pavel Slepov, Marina Usova, “Beta-functions and RG flows for holographic QCD with heavy and light quarks: Isotropic case”, Phys. Rev. D, 111:4 (2025)
Jing Zhou, Jun Chen, Le Zhang, Jialun Ping, Xun Chen, “Holographic Schwinger effect in anisotropic media”, Eur. Phys. J. C, 84:1 (2024)
Irina Ya. Aref'eva, Ali Hajilou, Alexander Nikolaev, Pavel Slepov, “Holographic QCD running coupling for light quarks in strong magnetic field”, Phys. Rev. D, 110:8 (2024)
И. Я. Арефьева, А. Хаджилу, П. С. Слепов, М. К. Усова, “Бета-функция в голографических моделях КХД”, ТМФ, 221:3 (2024), 615–628 [I. Ya. Aref'eva, A. Hajilou, P. S. Slepov, M. K. Usova, “Beta-function dependence on the running coupling in holographic QCD models”, TMF, 221:3 (2024), 615–628]
Irina Ya. Aref'eva, Ali Hajilou, Pavel Slepov, Marina Usova, “Running coupling for holographic QCD with heavy and light quarks: Isotropic case”, Phys. Rev. D, 110:12 (2024)
Pavel Slepov, “Magnetic versus inverse magnetic catalysis in hot and dense quark matter”, Int. J. Mod. Phys. A, 2024
И. Я. Арефьева, А. Хаджилу, П. С. Слепов, М. К. Усова, “Бета-функция в голографических моделях КХД”, ТМФ, 221:3 (2024), 615–628; I. Ya. Aref'eva, A. Hajilou, P. S. Slepov, M. K. Usova, “Beta-function dependence on the running coupling in holographic QCD models”, Theoret. and Math. Phys., 221:3 (2024), 2132–2143
P. S. Slepov, “Energy Loss for Heavy Quarks in Strong Magnetic Field”, Moscow Univ. Phys., 79:S1 (2024), 555
K. A. Rannu, “On the Role of the $\boldsymbol{z^{5}}$-Term in the Metric Strain Coefficient for the Holographic Description of Magnetic Catalysis in QGP”, Moscow Univ. Phys., 79:S1 (2024), 547
I. Ya. Aref'eva, “Holography for Heavy Ions Collisions”, Moscow Univ. Phys., 79:S1 (2024), 533
Irina Ya. Aref'eva, Ali Hajilou, Kristina Rannu, Pavel Slepov, “Magnetic catalysis in holographic model with two types of anisotropy for heavy quarks”, Eur. Phys. J. C, Part. Fields, 83 (2023), 1143–28
Bhaskar Shukla, David Dudal, Subhash Mahapatra, “Anisotropic and frame dependent chaos of suspended strings from a dynamical holographic QCD model with magnetic field”, J. High Energ. Phys., 2023:6 (2023)
Irina Ya. Aref'eva, Alexey Ermakov, Kristina Rannu, Pavel Slepov, “Holographic model for light quarks in anisotropic hot dense QGP with external magnetic field”, Eur. Phys. J. C, Part. Fields, 83 (2023), 79–21
Parul Jain, Siddhi Swarupa Jena, Subhash Mahapatra, “Holographic confining-deconfining gauge theories and entanglement measures with a magnetic field”, Phys. Rev. D, 107:8 (2023)
S. N. Sajadi, H. R. Safari, “Strongly-coupled anisotropic gauge theories and holography in 5D Einstein–Gauss–Bonnet gravity”, Eur. Phys. J. C, 83:8 (2023)
I. Ya. Aref'eva, “HQCD: HIC in holographic approach”, Phys. Part. Nucl. Lett., 54:5 (2023), 924–930
Irina Ya. Aref'eva, Alexey Ermakov, Pavel Slepov, “Direct photons emission rate and electric conductivity in twice anisotropic QGP holographic model with first-order phase transition”, Eur. Phys. J. C, Part. Fields, 82 (2022), 85–19
Siddhi Swarupa Jena, Bhaskar Shukla, David Dudal, Subhash Mahapatra, “Entropic force and real-time dynamics of holographic quarkonium in a magnetic field”, Phys. Rev. D, 105:8 (2022)
Xun Chen, Lin Zhang, Defu Hou, “Running coupling constant at finite chemical potential and magnetic field from holography *”, Chinese Phys. C, 46:7 (2022), 073101
Carlos Hoyos, Niko Jokela, Aleksi Vuorinen, “Holographic approach to compact stars and their binary mergers”, Progress in Particle and Nuclear Physics, 126 (2022), 103972