61 citations to https://www.mathnet.ru/rus/rm333
-
Yan Li, Beibei Hu, Ling Zhang, Jian Li, “The exact solutions for the nonlocal Kundu-NLS equation by the inverse scattering transform”, Chaos, Solitons & Fractals, 180 (2024), 114603
-
Roman G Novikov, Vladimir N Sivkin, Grigory V Sabinin, “Multipoint formulas in inverse problems and their numerical implementation”, Inverse Problems, 39:12 (2023), 125016
-
П. Г. Гриневич, Р. Г. Новиков, “Спектральное неравенство для уравнения Шрёдингера с многоточечным потенциалом”, УМН, 77:6(468) (2022), 69–76 ; P. G. Grinevich, R. G. Novikov, “Spectral inequality for Schrödinger's equation with multipoint potential”, Russian Math. Surveys, 77:6 (2022), 1021–1028
-
Roman G. Novikov, Springer Proceedings in Mathematics & Statistics, 385, Mathematical Analysis, its Applications and Computation, 2022, 75
-
Dubrovsky V.G., Topovsky V A., “Multi-Soliton Solutions of Kp Equation With Integrable Boundary Via Partial Differential -Dressing Method”, Physica D, 428 (2021), 133025
-
Grinevich P.G. Novikov R.G., “Transmission Eigenvalues For Multipoint Scatterers”, Eurasian J. Math. Comput. Appl., 9:4 (2021), 17–25
-
Grinevich P.G., Novikov R.G., “Creation and Annihilation of Point-Potentials Using Moutard-Type Transform in Spectral Variable”, J. Math. Phys., 61:9 (2020), 093501
-
Agaltsov A.D., Novikov R.G., “Error Estimates For Phaseless Inverse Scattering in the Born Approximation At High Energies”, J. Geom. Anal., 30:3, SI (2020), 2340–2360
-
А. Д. Агальцов, Р. Г. Новиков, “Примеры решения обратной задачи рассеяния и уравнений иерархии Веселова–Новикова по данным рассеяния точечных потенциалов”, УМН, 74:3(447) (2019), 3–16 ; A. D. Agaltsov, R. G. Novikov, “Examples of solution of the inverse scattering problem and the equations of the Novikov–Veselov hierarchy from the scattering data of point potentials”, Russian Math. Surveys, 74:3 (2019), 373–386
-
Agaltsov A.D., Hohage T., Novikov R.G., “An Iterative Approach to Monochromatic Phaseless Inverse Scattering”, Inverse Probl., 35:2 (2019), 024001