42 citations to https://www.mathnet.ru/rus/sm1100
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Ivan Bizyaev, Ivan Mamaev, “Bifurcation diagram and a qualitative analysis of particle motion in a Kerr metric”, Phys. Rev. D, 105:6 (2022)
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Elena A. Kudryavtseva, Nikolay N. Martynchuk, “Existence of a Smooth Hamiltonian Circle Action
near Parabolic Orbits and Cuspidal Tori”, Regul. Chaotic Dyn., 26:6 (2021), 732–741
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Kudryavtseva E.A., “Hidden Toric Symmetry and Structural Stability of Singularities in Integrable Systems”, Eur. J. Math., 2021
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Martynchuk N. Broer H.W. Efstathiou K., “Recent Advances in the Monodromy Theory of Integrable Hamiltonian Systems”, Indag. Math.-New Ser., 32:1 (2021), 193–223
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Martynchuk N., Broer H.W., Efstathiou K., “Hamiltonian Monodromy and Morse Theory”, Commun. Math. Phys., 375:2 (2020), 1373–1392
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Martynchuk N. Dullin H.R. Efstathiou K. Waalkens H., “Scattering Invariants in Euler'S Two-Center Problem”, Nonlinearity, 32:4 (2019), 1296–1326
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Philip Arathoon, “Singular Reduction of the $2$-Body Problem on the $3$-Sphere and the $4$-Dimensional Spinning Top”, Regul. Chaotic Dyn., 24:4 (2019), 370–391
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Bolsinov A., Izosimov A., “Smooth Invariants of Focus-Focus Singularities and Obstructions to Product Decomposition”, J. Symplectic Geom., 17:6 (2019), 1613–1648
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E Fontich, C Simó, A Vieiro, “Splitting of the separatrices after a Hamiltonian–Hopf bifurcation under periodic forcing”, Nonlinearity, 32:4 (2019), 1440
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Bolsinov A. Guglielmi L. Kudryavtseva E., “Symplectic Invariants For Parabolic Orbits and Cusp Singularities of Integrable Systems”, Philos. Trans. R. Soc. A-Math. Phys. Eng. Sci., 376:2131 (2018), 20170424