72 citations to https://www.mathnet.ru/eng/faa348
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Buchstaber, V, “Hyperelliptic addition law”, Journal of Nonlinear Mathematical Physics, 12 (2005), 106
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de Jong R., “Faltings' delta-invariant of a hyperelliptic Riemann surface”, Number Fields and Function Fields - Two Parallel Worlds, Progress in Mathematics, 239, 2005, 223–236
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V. M. Buchstaber, D. V. Leikin, “Heat Equations in a Nonholonomic Frame”, Funct. Anal. Appl., 38:2 (2004), 88–101
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A. A. Bolibrukh, A. P. Veselov, A. B. Zhizhchenko, I. M. Krichever, A. A. Mal'tsev, S. P. Novikov, T. E. Panov, Yu. M. Smirnov, “Viktor Matveevich Buchstaber (on his 60th birthday)”, Russian Math. Surveys, 58:3 (2003), 627–635
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V. M. Buchstaber, S. Yu. Shorina, “The $w$-function of a solution the $g$th stationary KdV equation”, Russian Math. Surveys, 58:4 (2003), 780–781
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Eilbeck, JC, “The hyperelliptic zeta-function and the integrable massive Thirring model”, Proceedings of the Royal Society of London Series A-Mathematical Physical and Engineering Sciences, 459:2035 (2003), 1581
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V. M. Buchstaber, D. V. Leikin, “Lie algebras associated with $\sigma$-functions, and versal deformations”, Russian Math. Surveys, 57:3 (2002), 584–586
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Buchstaber, VM, “Graded Lie algebras that define hyperelliptic sigma functions”, Doklady Mathematics, 66:1 (2002), 87
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Eilbeck, JC, “Varieties of elliptic solitons”, Journal of Physics A-Mathematical and General, 34:11 (2001), 2215
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V. M. Buchstaber, D. V. Leikin, V. Z. Ènol'skii, “Uniformization of Jacobi Varieties of Trigonal Curves and Nonlinear Differential Equations”, Funct. Anal. Appl., 34:3 (2000), 159–171