12 citations to https://www.mathnet.ru/rus/sm80
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Konstantinos Efstathiou, Andrea Giacobbe, “The topology associated with cusp singular points”, Nonlinearity, 25:12 (2012), 3409
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Pelayo A., San Vu Ngoc, “Symplectic Theory of Completely Integrable Hamiltonian Systems”, Bull Amer Math Soc, 48:3 (2011), 409–455
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Ошемков А.А., “Седловые особенности сложности 1 интегрируемых гамильтоновых систем”, Вестник московского университета. серия 1: математика. механика, 2011, № 2, 10–19
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А. В. Болсинов, А. В. Борисов, И. С. Мамаев, “Топология и устойчивость интегрируемых систем”, УМН, 65:2(392) (2010), 71–132 ; A. V. Bolsinov, A. V. Borisov, I. S. Mamaev, “Topology and stability of integrable systems”, Russian Math. Surveys, 65:2 (2010), 259–318
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А. А. Ошемков, “Классификация гиперболических особенностей ранга нуль интегрируемых гамильтоновых систем”, Матем. сб., 201:8 (2010), 63–102 ; A. A. Oshemkov, “Classification of hyperbolic singularities of rank zero of integrable Hamiltonian systems”, Sb. Math., 201:8 (2010), 1153–1191
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K. Efstathiou, D. Sadovskií, “Normalization and global analysis of perturbations of the hydrogen atom”, Rev Mod Phys, 82:3 (2010), 2099
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Oshemkov A.A., “Factors of Minimal Models for Saddle Singularities of Integrable Hamiltonian Systems”, Doklady Mathematics, 82:1 (2010), 549–553
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Anna Litvak-Hinenzon, Vered Rom-Kedar, “On Energy Surfaces and the Resonance Web”, SIAM J Appl Dyn Syst, 3:4 (2004), 525
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Oshemkov A., “On the Topological Structure of the Set of Singularities of Integrable Hamiltonian Systems”, Proceedings of the Workshop on Contemporary Geometry and Related Topics, ed. Bokan N. Djoric M. Fomenko A. Rakic Z. Wess J., World Scientific Publ Co Pte Ltd, 2004, 335–350
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Litvak-Hinenzon A., Rom-Kedar V., “Parabolic Resonances in 3 Degree of Freedom Near-Integrable Hamiltonian Systems”, Physica D, 164:3-4 (2002), 213–250