12 citations to https://www.mathnet.ru/rus/tmf9544
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F Coppini, P M Santini, “Modulation instability, periodic anomalous wave recurrence, and blow up in the Ablowitz–Ladik lattices”, J. Phys. A: Math. Theor., 57:1 (2024), 015202
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F Coppini, P M Santini, “The effect of loss/gain and Hamiltonian perturbations of the Ablowitz—Ladik lattice on the recurrence of periodic anomalous waves”, J. Phys. A: Math. Theor., 57:7 (2024), 075701
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Liming Ling, Xuan Sun, “Elliptic-rogue waves and modulational instability in nonlinear soliton equations”, Phys. Rev. E, 109:6 (2024)
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П. Г. Гриневич, “Римановы поверхности, близкие к вырожденным, в теории аномальных волн”, Геометрия, топология, математическая физика, Сборник статей. К 85-летию академика Сергея Петровича Новикова, Труды МИАН, 325, МИАН, М., 2024, 93–118 ; P. G. Grinevich, “Riemann Surfaces Close to Degenerate Ones in the Theory of Rogue Waves”, Proc. Steklov Inst. Math., 325 (2024), 86–110
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F. Coppini, G. Grinevich, M. Santini, “Periodic Rogue waves and perturbation theory”, Encyclopedia of Complexity and Systems Science, 2022, 1–22
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F. Coppini, G. Grinevich, M. Santini, “Periodic Rogue waves and perturbation theory”, Perturbation Theory, Encyclopedia of Complexity and Systems Science Series, 2022, 565
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P. G. Grinevich, P. M. Santini, “The linear and nonlinear instability of the akhmediev breather”, Nonlinearity, 34:12 (2021), 8331–8358
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F. Coppini, P. G. Grinevich, P. M. Santini, Encyclopedia of Complexity and Systems Science, 2021, 1
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F. Coppini, P. G. Grinevich, P. M. Santini, “Effect of a small loss or gain in the periodic nonlinear Schrodinger anomalous wave dynamics”, Phys. Rev. E, 101:3 (2020), 032204
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F. Coppini, P. M. Santini, “Fermi-Pasta-Ulam-Tsingou recurrence of periodic anomalous waves in the complex Ginzburg-Landau and in the Lugiato-Lefever equations”, Phys. Rev. E, 102:6 (2020), 062207