127 citations to https://www.mathnet.ru/rus/faa2218
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S. Saito, “String amplitudes as solutions to soliton equations”, Phys. Rev. D, 36:6 (1987), 1819
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И. М. Кричевер, “Спектральная теория «конечнозонных» нестационарных операторов Шрёдингера. Нестационарная модель Пайерлса”, Функц. анализ и его прил., 20:3 (1986), 42–54
; I. M. Krichever, “Spectral theory of finite-zone nonstationary Schrödinger operators. A nonstationary Peierls model”, Funct. Anal. Appl., 20:3 (1986), 203–214
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J Deenen, C Quesne, “The SO(6, 2) model of SU(3) and its generalisation to SU(n)”, J. Phys. A: Math. Gen., 19:17 (1986), 3463
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David A. Vogan, “The unitary dual of GL(n) over an archimedean field”, Invent Math, 83:3 (1986), 449
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A J Bracken, J H MacGibbon, “Creation and annihilation operators for SU(3) in an SO(6,2) model”, J. Phys. A: Math. Gen., 17:13 (1984), 2581
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A. J. Bracken, “A simplified SO(6,2) model of SU(3)”, Commun.Math. Phys., 94:3 (1984), 371
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E. �. Pasika, “Example of a first-order differential equation in hilbert space without continuous dependence of the solution on the initial condition”, Ukr Math J, 35:6 (1984), 690
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Akira Nakamura, “A Direct Method of Calculating Periodic Wave Solutions to Nonlinear Evolution Equations. I. Exact Two-Periodic Wave Solution”, J. Phys. Soc. Jpn., 47:5 (1979), 1701
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S. P. Novikov, Lecture Notes in Physics, 80, Mathematical Problems in Theoretical Physics, 1978, 222
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И. М. Кричевер, “Методы алгебраической геометрии в теории нелинейных
уравнений”, УМН, 32:6(198) (1977), 183–208
; I. M. Krichever, “Methods of algebraic geometry in the theory of non-linear equations”, Russian Math. Surveys, 32:6 (1977), 185–213