43 citations to https://www.mathnet.ru/rus/tmf5078
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Ke Ren, Hui-Feng Fu, Qing Wang, “Derivation of the effective chiral Lagrangian for pseudoscalar, scalar, vector, and axial-vector mesons from QCD”, Phys. Rev. D, 95:7 (2017)
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А. А. Андрианов, В. А. Андрианов, “Бозонизация мезонного сектора квантовой хромодинамики и нарушение пространственной четности в сильных взаимодействиях”, ТМФ, 185:1 (2015), 12–27 ; A. A. Andrianov, V. A. Andrianov, “Bosonization of the meson sector of QCD and parity breaking in strong interactions”, Theoret. and Math. Phys., 185:1 (2015), 1370–1382
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Yu. P. Rybakov, “Cosmic chiral vortices”, Phys. Part. Nuclei, 41:1 (2010), 101
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Shao-Zhou Jiang, Ying Zhang, Chuan Li, Qing Wang, “Computation of thep6order chiral Lagrangian coefficients”, Phys. Rev. D, 81:1 (2010)
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Yu. P. Rybakov, I. S. Ivanova, “Skyrme-Einstein closed cosmic chiral strings”, Phys. Atom. Nuclei, 70:7 (2007), 1312
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Yu. P. Rybakov, “Chiral self-gravitating cosmic vortices”, Phys. Atom. Nuclei, 68:6 (2005), 1042
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В. Ю. Новожилов, Ю. В. Новожилов, “Цветной скирмион в вакуумном поле: асимптотика, стабильность и возможность
конфайнмента”, ТМФ, 131:1 (2002), 62–71 ; V. Yu. Novozhilov, Yu. V. Novozhilov, “Color Skyrmion in the Vacuum Field: Asymptotic Behavior, Stability, and the Possibility of Confinement”, Theoret. and Math. Phys., 131:1 (2002), 498–505
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Qing Wang, Yu-Ping Kuang, Xue-Lei Wang, Ming Xiao, “Derivation of the effective chiral Lagrangian for pseudoscalar mesons from QCD”, Phys. Rev. D, 61:5 (2000)
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Andrianov, AA, “The extended chiral quark model and QCD”, Nuclear Physics B, 533:1–3 (1998), 429
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M. Vallières, X. W. Pan, D. H. Feng, A. Novoselsky, Lecture Notes in Physics, 482, Contemporary Nuclear Shell Models, 1997, 292