P. G. Grinevich, “Riemann Surfaces Close to Degenerate Ones in the Theory of Rogue Waves”, Proc. Steklov Inst. Math., 325 (2024), 86–110
2.
F. Coppini, P. G. Grinevich, P. M. Santini, “The periodic $N$ breather anomalous wave solution of the Davey–Stewartson equations; first appearance, recurrence, and blow up properties”, J. Phys. A, 57 (2024), 15208 , 27 pp., arXiv: 2308.12422;
Simonetta Abenda, Petr G. Grinevich, “Geometric nature of relations on plabic graphs and totally non-negative Grassmannians”, Int. Math. Res. Not. IMRN, 2023:14 (2023), 11986 , 66 pp. ; (Published online)
F. Coppini, P. G. Grinevich, P. M. Santini, “Periodic rogue waves and perturbation theory”, Encyclopedia of Complexity and Systems Science, eds. R. A. Meyers, Springer Science+Business Media LLC, 2022, 565–584
Simonetta Abenda, Petr G. Grinevich, “Edge vectors on plabic networks in the disk and amalgamation of totally non-negative Grassmannians”, Adv. Math., 406 (2022), 108523 , 57 pp.
P. G. Grinevich, R. G. Novikov, “Spectral inequality for Schrödinger's equation with multipoint potential”, Russian Math. Surveys, 77:6 (2022), 1021–1028
7.
P. G. Grinevich, P. M. Santini, “The finite-gap method and the periodic Cauchy problem for $(2+1)$-dimensional anomalous waves for the focusing Davey–Stewartson $2$ equation”, Russian Math. Surveys, 77:6 (2022), 1029–1059
8.
Simonetta Abenda, Petr G. Grinevich, “Real regular KP divisors on 𝙼-curves and totally non-negative Grassmannians”, Lett. Math. Phys., 112 (2022), 115 , 64 pp.
P. G. Grinevich, R. G. Novikov, “Transmission eigenvalues for multipoint scatterers”, Eurasian Journal of Mathematical and Computer Applications, 9:4 (2021), 17–25
P. G. Grinevich, R. G. Novikov, “Creation and annihilation of point-potentials using Moutard-type transform in spectral variable”, J. Math. Phys., 61 (2020), 093501 , 7 pp., arXiv: 1911.09627
F. Coppini, P. G. Grinevich, P. M. Santini,, “Effect of a small loss or gain in the periodic nonlinear Schrödinger anomalous wave dynamics”, Phys. Rev. E (3), 101:3 (2020), 032204 , 8 pp.
P. G. Grinevich, P. M. Santini, “The finite-gap method and the periodic NLS Cauchy problem of anomalous waves for a finite number of unstable modes”, Russian Math. Surveys, 74:2 (2019), 211–263
14.
P. G. Grinevich, P. M. Santini, “Numerical instability of the Akhmediev breather and a finite-gap model of it”, Recent Developments in Integrable Systems and Related Topics of Mathematical Physics (Kezenoi-Am, Russia, 2016), Springer Proceedings in Mathematics & Statistics, 273, eds. Viktor M. Buchstaber, Sotiris Konstantinou-Rizos, Alexander V. Mikhailov, Springer, 2019, 3–23
D. Pierangeli, M. Flammini, L. Zhang, G. Marcucci, A. J. Agranat, P. G. Grinevich, P. M. Santini, C. Conti, E. DelRe, “Observation of Fermi-Fasta-Flam-Tsingou recurrence in optical experiment”, The XXII workshop of the Council of Nonlinear Dynamics of the Russian Academy of Sciences, Journal of Oceanological Research, 47, no. 1, 2019, 108
16.
P. G. Grinevich, R. G. Novikov, “Moutard transform for the two-dimensional conductivity equation”, Letters in Mathematical Physics, 109 (2019), 2209–2222 , arXiv: 1801.00295
S. Abenda, P. G. Grinevich, “Reducible M-curves for Le-networks in the totally-nonnegative Grassmannian and KP-II multiline solitons”, Selecta Mathematica, 25 (2019), 43 , 64 pp., arXiv: 1805.05641
Simonetta Abenda, Petr G. Grinevich, “Real soliton lattices of the Kadomtsev–Petviashvili II equation and desingularization of spectral curves: the $\mathrm {Gr^{ \scriptscriptstyle TP}}(2,4)$ case”, Proc. Steklov Inst. Math., 302 (2018), 1–15
19.
P. G. Grinevich, P. M. Santini, “Phase resonances of the NLS rogue wave recurrence in the quasisymmetric case”, Theoret. and Math. Phys., 196:3 (2018), 1294–1306
20.
P. G. Grinevich, P. M. Santini, “The exact rogue wave recurrence in the NLS periodic setting via matched asymptotic expansions, for 1 and 2 unstable modes”, Physics Letters A, 382 (2018), 973–979 , arXiv: 1708.04535
S. Abenda, P. G. Grinevich, “Rational degeneration of M-curves, totally positive Grassmannians and KP2-solitons”, Commun. Math. Phys., 361:3 (2018), 1029–1081 , arXiv: 1506.00563
P. G. Grinevich, P. M. Santini, “The finite gap method and the analytic description of the exact rogue wave recurrence in the periodic NLS Cauchy problem. 1”, Nonlinearity, 31:11 (2018), 5258–5308 , arXiv: 1707.05659
D. Pierangeli, M. Flammini, L. Zhang, G. Marcucci, A. J. Agranat, P. G. Grinevich, P. M. Santini, C. Conti, E. DelRe, “Observation of Fermi-Pasta-Ulam-Tsingou recurrence and its exact dynamics”, Physical Review X, 8:4 (2018), 041017 , 9 pp.
P. G. Grinevich, S. P. Novikov, “Singular solitons and spectral meromorphy”, Russian Math. Surveys, 72:6 (2017), 1083–1107
25.
P. G. Grinevich, R. G. Novikov, “Multipoint scatterers with bound states at zero energy”, Theoret. and Math. Phys., 193:2 (2017), 1675–1679
26.
P. G. Grinevich, R. G. Novikov, “Generalized Analytic Functions, Moutard-Type Transforms, and Holomorphic Maps”, Funct. Anal. Appl., 50:2 (2016), 150–152
27.
P. G. Grinevich, S. P. Novikov, “On $\mathbf{s}$-meromorphic ordinary differential operators”, Russian Math. Surveys, 71:6 (2016), 1143–1145
28.
P. G. Grinevich, P. M. Santini, “An integral geometry lemma and its applications: The nonlocality of the Pavlov equation and a tomographic problem with opaque parabolic objects”, Theoret. and Math. Phys., 189:1 (2016), 1450–1458
29.
P. G. Grinevich, P. M. Santini, “Nonlocality and the inverse scattering transform for the Pavlov equation”, Studies in Applied Mathematics, 137:1 (2016), 10–27 , arXiv: 1507.08205
P. G. Grinevich, R. G. Novikov, “Moutard transform for the generalized analytic functions”, The Journal of Geometric Analysis, 26:4 (2016), 2984–2995 , arXiv: 1510.08764
P. G. Grinevich, R. G. Novikov, “Moutard transform approach to generalized analytic functions with contour poles”, Bulletin des sciences math{\e}matiques, 140:6 (2016), 638–656 , arXiv: 1512.08874
P. G. Grinevich, S. P. Novikov, On the s-meromorphic OD operators, 2015 , 8 pp., arXiv: 1510.06770
33.
P. G. Grinevich, A. E. Mironov, S. P. Novikov, “On the non-relativistic two-dimensional purely magnetic supersymmetric Pauli operator”, Russian Math. Surveys, 70:2 (2015), 299–329
34.
P. G. Grinevich, P. M. Santini, D. Wu, “The Cauchy problem for the Pavlov equation”, Nonlinearity, 28:11 (2015), 3709–3754 , arXiv: 1310.5834
P. G. Grinevich, S. P. Novikov, “Spectrally meromorphic operators and non-linear systems”, Russian Math. Surveys, 69:5 (2014), 924–926
36.
P. G. Grinevich, “Elementy teorii rimanovykh poverkhnostei i teorema Rimana-Rokha”, Geometricheskie metody matematicheskoi fiziki 2. Lektsii letnei shkoly. Voskresenskoe 25–29.06.2012 (Voskresenskoe 25–29 iyunya 2012), eds. B. A. Dubrovin, MAKS Press, Moskva, 2014, 29–60
37.
P. G. Grinevich, R. G. Novikov, “Faddeev eigenfunctions for multipoint potentials”, Eurasian Journal of Mathematical and Computer Applications, 1:2 (2013), 76–91
38.
P. G. Grinevich, S. P. Novikov, “Discrete $SL_n$-connections and self-adjoint difference operators on two-dimensional manifolds”, Russian Math. Surveys, 68:5 (2013), 861–887
39.
P. G. Grinevich, S. P. Novikov, “Singular soliton operators and indefinite metrics”, Bulletin of the Brazilian Mathematical Society, New Series, 44:4 (2013), 809–840
P. G. Grinevich, P. M. Santini, “Holomorphic eigenfunctions of the vector field associated with the dispersionless Kadomtsev-Petviashvili equation”, Journal of Differential Equations, 255:7 (2013), 1469–1491 , arXiv: 1111.4446
P. G. Grinevich, R. G. Novikov, “Faddeev eigenfunctions for point potentials in two dimensions”, Physics Letters A, 2012, no. 376, 1102–1106 , arXiv: 1110.3157
P. G. Grinevich, A. E. Mironov, S. P. Novikov, “Two-dimensional Pauli operator in a magnetic field”, Low temperature physics, 37 (2011), 829–833
43.
P. G. Grinevich, S. P. Novikov, “Singular solitons and indefinite metrics”, Doklady Mathematics, 83:1 (2011), 56–58
44.
P. G. Grinevich, A. E. Mironov, S. P. Novikov, “2D-Schrödinger Operator, (2+1) evolution systems and new reductions, 2D-Burgers hierarchy and inverse problem data”, Russian Math. Surveys, 65:3 (2010), 580–582
45.
P. G. Grinevich, A. E. Mironov, S. P. Novikov, “Zero level of a purely magnetic two-dimensional nonrelativistic Pauli operator for spin-$1/2$ particles”, Theoret. and Math. Phys., 164:3 (2010), 1110–1127
46.
S. Abenda, P. Grinevich, “Periodic billiard orbits on n-dimensional ellipsoids with impacts on confocal quadrics and isoperiodic deformations”, Journal of Geometry and Physics, 60:10 (2010), 1617–1633
P. G. Grinevich, S. P. Novikov, “Singular finite-gap operators and indefinite metrics”, Russian Math. Surveys, 64:4 (2009), 625–650
48.
P. G. Grinevich, K. V. Kaipa, “Multiscale Limit for Finite-Gap Sine-Gordon Solutions and Calculation of Topological Charge Using Theta-Functional Formulae”, Proc. Steklov Inst. Math., 266 (2009), 49–58
49.
P. G. Grinevich, I. A. Taimanov, “Spectral conservation laws for periodic nonlinear equations of the Melnikov type”, Geometry, topology, and mathematical physics, Amer. Math. Soc. Transl. Ser. 2, 224, Amer. Math. Soc., Providence, RI, 2008, 125–138
P. G. Grinevich, R. G. Novikov, “The Cauchy kernel for the Novikov–Dynnikov DN-discrete complex analysis in triangular lattices”, Russian Math. Surveys, 62:4 (2007), 799–801
51.
P. G. Grinevich, S. P. Novikov, “Reality problems in the soliton theory”, Probability, Geometry and Integrable Systems, Math. Sci. Res. Inst. Publ., 55, Cambridge Univ. Press, Cambridge, England., 2007, 221–239
52.
P. G. Grinevich, I. A. Taimanov, “Infinitesimal Darboux transformations of the spectral curves of tori in the four-space”, International Mathematics Research Notices, 2007:2 (2007), rnm005 , 21 pp.
P. G. Grinevich, P. M. Santini, “Newtonian dynamics in the plane corresponding to straight and cyclic motions on the hyperelliptic curve $\mu^2=\nu^n-1, n\in{\mathbb Z}$: ergodicity, isochrony, periodicity and fractals”, Physica D: Nonlinear Phenomena, 232:1 (2007), 22–32
A. Doliwa, P. G. Grinevich, M. Nieszporski, P. M. Santini, “Integrable lattices and their sub-lattices: from the discrete Moutard (discrete Cauchy-Riemann) 4-point equation to the self-adjoint 5-point scheme”, Journal of Mathematical Physics, 48:1 (2007), 013513 , 28 pp.
P. G. Grinevich, “$\bar\partial$-Approach to Integrable Systems”, Encyclopedia of Mathematical Physics: Five-Volume Set, eds. J.-P. Francoise, G. L. Naber, S. T. Tsou, Elsevier, 2006, 34–41
56.
P. G. Grinevich, P. M. Santini, “The initial boundary value problem on the interval for the Nonlinear Schrodinger equation; the algebro-geometric approach. I.”, Geometry, Topology, and Mathematical Physics, Amer. Math. Soc. Transl. Ser. 2, 212, Amer. Math. Soc., 2004, 157–178
57.
P. G. Grinevich, S. P. Novikov, “Topological phenomena in the real periodic sine-Gordon theory”, Journal of Mathematical Physics, 44:8 (2003), 3174–3184
P. G. Grinevich, S. P. Novikov, “Topological charge of the real periodic finite-gap Sine-Gordon solutions”, Communications on Pure and Applied Mathematics, 56:7 (2003), 956–978
P. G. Grinevich, S. P. Novikov, “Real finite-zone solutions of the sine-Gordon equation: a formula for the topological charge”, Russian Math. Surveys, 56:5 (2001), 980–981
60.
P. G. Grinevich, “Approximation theorem for the self-focusing nonlinear Schrodinger equation and for the periodic curves in ${\mathbb R}^3$.”, Physica D: Nonlinear Phenomena, 152/153 (2001), 20–27
P. G. Grinevich, “Scattering transformation at fixed non-zero energy for the two-dimensional Schrödinger operator with potential decaying at infinity”, Russian Math. Surveys, 55:6 (2000), 1015–1083
62.
P. G. Grinevich, M. U. Schmidt, “Closed curves in ${\mathbb R}^3$ and the nonlinear Schrodinger equation”, Proceedings of the Workshop on Nonlinearity, Integrability and All That: Twenty Years after NEEDS '79 (Gallipoli, 1999), World Scientific Publishing, River Edge, NJ, 2000, 139–145
63.
P. G. Grinevich, “Golomorfnoe otobrazhenie”, Matematicheskaya fizika. Entsiklopediya, Bolshaya Rossiiskaya entsiklopediya, Moskva, 1998, 148
64.
P. G. Grinevich, “Golomorfnaya forma”, Matematicheskaya fizika. Entsiklopediya, Bolshaya Rossiiskaya entsiklopediya, Moskva, 1998, 148
65.
P. G. Grinevich, “Kompleksnoe mnogoobrazie”, Matematicheskaya fizika. Entsiklopediya, Bolshaya Rossiiskaya entsiklopediya, Moskva, 1998, 281
66.
P. G. Grinevich, “Konformnoe preobrazovanie”, Matematicheskaya fizika. Entsiklopediya, Bolshaya Rossiiskaya entsiklopediya, 1998, 288
67.
P. G. Grinevich, M. U. Schmidt, “Conformal invariant functionals of immersions of tori into ${\mathbb R}^3$”, Journal of Geometry and Physics, 26:1-2 (1998), 51–78
P. G. Grinevich, “Nonsingularity of the direct scattering transform for the Kadomtsev-Petviashvili 2 equation with real exponentially decaying at infinity potential”, Letters in Mathematical Physics, 40 (1997), 59–73
P. G. Grinevich, M. U. Schmidt, “Periodic preserving deformations of the finite-gap solutions of the soliton equations”, Proceedings of the first workshop “Nonlinear physics. Theory and experiment” (Lecce, Italy, June 29-July 7, 1995), eds. E.Alfinito, M.Boiti, L.Martina, F.Pempinelli, World Scientific, 1996, 124–130
70.
P. G. Grinevich, S. P. Novikov, “Nonselfintersecting magnetic orbits on the plane. Proof of Principle of the Overthrowing of the Cycles”, Topics in topology and mathematical physics., Amer. Math. Soc. Transl. Ser. 2, 170, Amer. Math. Soc., 1995, 59–82
P. G. Grinevich, R. G. Novikov, “Transparent Potentials at Fixed Energy in Dimension Two. Fixed-Energy Dispersion Relations for the Fast Decaying Potentials”, Commun. Math. Phys., 174 (1995), 409–446
P. G. Grinevich, M. U. Schmidt, “Period preserving nonisospectral flows and the moduli space of periodic solutions of soliton equations”, Physica D: Nonlinear Phenomena, 87 (1995), 73–98
P. G. Grinevich, S. P. Novikov, “String equation. II. Physical solution”, St. Petersburg Math. J., 6:3 (1995), 553–574
74.
Theoret. and Math. Phys., 99:2 (1994), 599–605
75.
P. G. Grinevich, “Nonisospectral symmetries of the KdV equation and the corresponding symmetries of the Whitham equations”, Singular limits of Dispersive waves (Lyon, 8-12 July 1991), NATO ASI Series, 320, eds. N. M. Ercolany, I. R. Gabitov, C. D. Levermore, D. Serre, Springer, Boston, MA, 1994, 67–88
76.
V. A. Benderskii, P. G. Grinevich, D. E. Makarov, “Quantum chemical dynamics in two dimensions”, Chem. Phys., 170 (1993), 275–293
P. G. Grinevich, A. Yu. Orlov, E. I. Schulman, “On the symmetries of the integrable systems”, Important developments in soliton theory, Springer Ser. Nonlinear Dynam., eds. A. Fokas, V. E. Zakharov, Springer-Verlag, Berlin - Heidelberg, 1993, 283–301
P. G. Grinevich, “The action of the Virasoro nonisospectral KdV symmetries of the Whitham equations”, “Nonlinear Processes in Physics” (Proccedings of the 3 Potsdam - 5 Kiev Workshop at Clarkson University) (Potsdam, NY, USA, August 1-11, 1991), eds. A. S. Fokas, D. J. Kaup, A. C. Newell, V. E.`Zakharov, Springer-Verlag, Berlin - Heidelberg, 1993, 108–112
79.
V. A. Benderskii, P. G. Grinevich, D. E. Makarov, D. L. Pastur, “Preexponential factor of rate constant of low-temperature chemical reactions. Fluctuational width of tunneling channels and stability frequences”, Chem. Phys., 161 (1992), 51–61
P. G. Grinevich, A. Yu. Orlov, “Variations of the complex structure of Riemann surfaces by vector fields on a contour and objects of the KP theory. The Krichever–Novikov problem of the action on the Baker–Akhieser functions”, Funct. Anal. Appl., 24:1 (1991), 61–63
81.
P. G. Grinevich, A. Yu. Orlov, “Deistvie algebry Virasoro na modulyakh rimanovykh poverkhnostei. Realizatsiya v teorii uravneniya Kadomtseva-Petviashvili. Zadacha Krichevera-Novikova o deistvii na funktsiyu Beikera-Akhiezera”, Geometriya, topologiya i prilozheniya, Min. vysshego i sredn. spets. obraz. RSFSR, Moskovskii institut priborostroeniya, 1990, 100–104
82.
P. G. Grinevich, I. M. Krichever, “Algebraic-geometry methods in soliton theory”, Soliton theory: a survey of results, Nonlinear Science: Theory and Applications, eds. A. Fordy, University press, 1990, 354–400
83.
P. G. Grinevich, A. Yu. Orlov, “Higher (nonisospectral) symmetries of the Kadomtsev-Petviashvili equations and the Virasoro action on Riemann surfaces.”, Nonlinear evolution equations and dynamical systems (Kolymbari, July 2-16 1989), Res. Rep. Phys., Springer, Berlin, 1990, 65–69
P. G. Grinevich, A. Yu. Orlov, “Effect of additional symmetries of K-P equation on the finite-gap solutions and variatons of Riemann surfaces. The Krichever-Novikov problem”, Soliton and applications (4 international Workshop, Dubna, USSR, 24 - 26 August 1989), eds. V. G. Makhankov, V. K. Fedyanin, O. K. Pashaev,, World Sci. Publ., River Edge, NJ, 1990, 147–151
85.
P. G. Grinevich, “Rapidly decreasing potentials on a background of finite-zone potentials and the $\partial$-problem on Riemann spaces”, Funct. Anal. Appl., 23:4 (1989), 321–322
86.
P. G. Grinevich, A. Yu. Orlov, “Virasoro action on Riemann surfaces, Grassmanians, $\det\bar\partial$ and Segal-Wilson $\tau$- function”, In Problems of modern quantum field theory (Alushta, April 24 - May 5, 1989), Research Reports in Physics, eds. A. A. Belavin, A. U. Klimyk, A. B. Zamolodchikov, Springer, Berlin, Heidelberg, 1989, 86–106
P. G. Grinevich, A. Yu. Orlov, “Wilson $\tau$ - function and $\det\bar\partial$”, Nonlinear world: Proceedings of the 4 international workshop on nonlinear and turbulent processes in physics (Kiev 9-22 Oktober, 1989), 2, Naukova Dumka, 1989, 242–245
88.
P. G. Grinevich, A. Yu. Orlov, “Vector fields action on Riemann surfaces and KP theory. The Krichever-Novikov problem”, Nonlinear world: Proceedings of the 4 international workshop on nonlinear and turbulent processes in physics (Kiev 9-22 Oktober, 1989), 2, Naukova Dumka, 1989, 246–249
89.
P. G. Grinevich, S. P. Novikov, “Two-dimensional “inverse scattering problem” for negative energies and generalized-analytic functions. I. Energies below the ground state”, Funct. Anal. Appl., 22:1 (1988), 19–27
90.
P. G. Grinevich, G. E. Volovik, “Topology of gap nodes in superfluid $\vphantom{H}_3$He: $\pi_4$ homotopy group for $\vphantom{H}_3$He-B disclination”, Journal of Low Temp. Phys., 72:5/6 (1988), 371–389
P. G. Grinevich, S. P. Novikov, “Inverse scattering problem for the two-dimensional Schrödinger operator at a fixed negative energy and generalized analytic functions”, Plasma theory and nonlinear and turbulent processes in physics, Vol. 1, 2 (Kiev, 13-25 April 1987), World Sci. Publishing, Singapure, 1988, 58–85
92.
P. G. Grinevich, R. G. Novikov, “Analogues of multisoliton potentials for the two-dimensional Schrödinger operator, and a nonlocal Riemann problem”, Dokl. Akad. Nauk SSSR, 286:1 (1986), 19–22
93.
P. G. Grinevich, S. V. Manakov, “Inverse scattering problem for the two-dimensional Schrödinger operator, the $\bar\partial$-method and nonlinear equations”, Funct. Anal. Appl., 20:2 (1986), 94–103
94.
P. G. Grinevich, “Vector rank of commuting matrix differential operators. Proof of S. P. Novikov's criterion”, Math. USSR-Izv., 28:3 (1987), 445–465
95.
P. G. Grinevich, “Rational solitons of the Veselov–Novikov equations are reflectionless two-dimensional potentials at fixed energy”, Theoret. and Math. Phys., 69:2 (1986), 1170–1172
96.
P. G. Grinevich, R. G. Novikov, “Analogs of multisoliton potentials for the two-dimensional Schrödinger operator”, Funct. Anal. Appl., 19:4 (1985), 276–285
97.
P. G. Grinevich, “Commuting matrix differential operators of arbitrary rank”, Dokl. Akad. Nauk SSSR, 278:5 (1984), 1048–1052
98.
S. P. Novikov, P. G. Grinevich, “Spectral theory of commuting operators of rank two with periodic coefficients”, Funct. Anal. Appl., 16:1 (1982), 19–20
99.
P. G. Grinevich, “Rational solutions for the equation of commutation of differential operators”, Funct. Anal. Appl., 16:1 (1982), 15–19
100.
Geometriya, topologiya, matematicheskaya fizika, Sbornik statei. K 85-letiyu akademika Sergeya Petrovicha Novikova, Trudy MIAN, 325, ed. V. M. Bukhshtaber, P. G. Grinevich, I. A. Dynnikov, O. K. Sheinman, MIAN, M., 2024 , 333 pp.
101.
A. V. Bolsinov, V. M. Buchstaber, A. P. Veselov, P. G. Grinevich, I. A. Dynnikov, V. V. Kozlov, Yu. A. Kordyukov, D. V. Millionshchikov, A. E. Mironov, R. G. Novikov, S. P. Novikov, A. A. Yakovlev, “Iskander Asanovich Taimanov (on his 60th birthday)”, Russian Math. Surveys, 77:6 (2022), 1159–1168
102.
V. M. Buchstaber, A. N. Varchenko, A. P. Veselov, P. G. Grinevich, S. Grushevsky, S. Yu. Dobrokhotov, A. V. Zabrodin, A. V. Marshakov, A. E. Mironov, N. A. Nekrasov, S. P. Novikov, A. Yu. Okounkov, M. A. Olshanetsky, A. K. Pogrebkov, I. A. Taimanov, M. A. Tsfasman, L. O. Chekhov, O. K. Sheinman, S. B. Shlosman, “Igor' Moiseevich Krichever (on his 70th birthday)”, Russian Math. Surveys, 76:4 (2021), 733–743
103.
V. E. Adler, Yu. Yu. Berest, V. M. Buchstaber, P. G. Grinevich, B. A. Dubrovin, I. M. Krichever, S. P. Novikov, A. N. Sergeev, M. V. Feigin, J. Felder, E. V. Ferapontov, O. A. Chalykh, P. I. Etingof, “Alexander Petrovich Veselov (on his 60th birthday)”, Russian Math. Surveys, 71:6 (2016), 1159–1176
104.
P. G. Grinevich, A. E. Mironov, S. P. Novikov, “Erratum to: Zero level of a purely magnetic two-dimensional nonrelativistic Pauli operator for spin-1/2 particles (Theoretical and Mathematical Physics, (2010), 164, 3, (1110-1127))”, Theoretical and Mathematical Physics, 166:2 (2011), 278
Действие алгебры векторных полей на конечнозонные решения КП P. G. Grinevich, A. Yu. Orlov Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) February 14, 2024 18:30
Point scatterers and transmission eigenvalues P. G. Grinevich, R. G. Novikov The ninth international conference "Quasilinear Equations, Inverse Problems and their Applications" (QIPA 2023) December 6, 2023 09:30
8.
Действие алгебры векторных полей на конечнозонные решения КП P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) November 29, 2023 18:30
Сигнатуры на плабик-графах и вполне неотрицательные грассманианы P. G. Grinevich Conference “Geometry, topology and mathematical physics” on the occasion of the 85th anniversary of S.P. Novikov and the 80th anniversary of V.M. Buchstaber April 10, 2023 14:30
Точечные рассеиватели в квантовой механике P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) August 31, 2022 14:00
Лекция 8. Формула Итса-Матвеева P. G. Grinevich Course by E. Yu. Bunkova, P. G. Grinevich and O. K. Sheinman "Algebro-geometric methods in the theory of integrable systems" March 31, 2020
Лекция 6.Обращение преобразования Абеля P. G. Grinevich Course by E. Yu. Bunkova, P. G. Grinevich and O. K. Sheinman "Algebro-geometric methods in the theory of integrable systems" March 17, 2020 18:00
Задача Коши для уравнения Павлова P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) August 20, 2014 14:00
71.
Строго положительные грассманианы и вырожденные M-кривые P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) March 19, 2014 18:30
Периодические орбиты бильярдов на квадриках. II P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) November 18, 2009 18:30
85.
Периодические орбиты бильярдов на квадриках. I P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) November 11, 2009 18:30
Сингулярные конечнозонные операторы и индефинитные метрики. II S. P. Novikov, P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) April 8, 2009
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Пространственно-дискретный аналог иерархии Веселова–Новикова P. G. Grinevich Seminar of the Department of Geometry and Topology "Geometry, Topology and Mathematical Physics", Steklov Mathematical Institute of RAS (Novikov Seminar) April 23, 2008
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