297 citations to https://www.mathnet.ru/rus/tmf2538
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V. S. Gerdjikov, A. B. Yanovski, “Gauge covariant theory of the generating operator. I”, Commun.Math. Phys., 103:4 (1986), 549
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A.V. MIKHAILOV, Modern Problems in Condensed Matter Sciences, 17, Solitons, 1986, 623
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T. A. Minelli, A. Pascolini, “Kinetic and thermodynamical interpretation of the conservation laws of a nonlinear Schrödinger equation and other completely integrable systems”, Nuov Cim B, 85:1 (1985), 1
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W. -H. Steeb, B. M. Spieker, Lecture Notes in Physics, 216, Applications of Field Theory to Statistical Mechanics, 1985, 245
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M. Lakshmanan, M. Daniel, K. Nakamura, Springer Series in Synergetics, 30, Dynamical Problems in Soliton Systems, 1985, 210
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F.W. Nijhoff, H.W. Capel, G.L. Wiersma, Lecture Notes in Physics, 239, Geometric Aspects of the Einstein Equations and Integrable Systems, 1985, 263
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M. Lakshmanan, S. Ganesan, “Geometrical and gauge equivalence of the generalized Hirota, Heisenberg and Wkis equations with linear inhomogeneities”, Physica A: Statistical Mechanics and its Applications, 132:1 (1985), 117
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Yoshimasa Nakamura, “On Heisenberg models with values in Hermitian symmetric spaces”, Lett Math Phys, 9:2 (1985), 107
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Hidenori Hasimoto, Tsutomu Kambe, “Simulation of Invariant Shapes of a Vortex Filament with an Elastic Rod”, J. Phys. Soc. Jpn., 54:1 (1985), 5
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В. В. Нестеренко, “Нелинейная сигма-модель для уравнения Буллоу–Додда”, ТМФ, 58:2 (1984), 192–199 ; V. V. Nesterenko, “Nonlinear $\sigma$ model for the Dodd–Bullough equation”, Theoret. and Math. Phys., 58:2 (1984), 126–131