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Publications in Math-Net.Ru |
Citations |
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2013 |
1. |
V. L. Vereshchagin, “Explicit Solutions of Boundary-Value Problems for $(2+1)$-Dimensional Integrable Systems”, Mat. Zametki, 93:3 (2013), 333–346 ; Math. Notes, 93:3 (2013), 360–372 |
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2012 |
2. |
V. L. Vereshchagin, “Integrable boundary conditions for $(2+1)$-dimensional models of mathematical physics”, TMF, 171:3 (2012), 430–437 ; Theoret. and Math. Phys., 171:3 (2012), 792–799 |
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2010 |
3. |
V. L. Vereshchagin, “Single-Phase Averaging for the Ablowitz–Ladik Chain”, Mat. Zametki, 87:6 (2010), 814–824 ; Math. Notes, 87:6 (2010), 797–806 |
4. |
V. L. Vereshchagin, “Explicit solutions of an integrable boundary value problem for the two-dimensional Toda lattice”, TMF, 165:1 (2010), 25–31 ; Theoret. and Math. Phys., 165:1 (2010), 1256–1261 |
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2009 |
5. |
V. L. Vereshchagin, “Discrete Toda lattices and the Laplace method”, TMF, 160:3 (2009), 434–443 ; Theoret. and Math. Phys., 160:3 (2009), 1229–1237 |
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2008 |
6. |
V. L. Vereshchagin, “Darboux-integrable discrete systems”, TMF, 156:2 (2008), 207–219 ; Theoret. and Math. Phys., 156:2 (2008), 1142–1153 |
2
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2006 |
7. |
V. L. Vereshchagin, “Integrable boundary-value problem for the Volterra chain on the half-axis”, Mat. Zametki, 80:5 (2006), 696–700 ; Math. Notes, 80:5 (2006), 658–662 |
2
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8. |
V. L. Vereshchagin, “Soliton solutions of an integrable boundary problem on the half-line for the discrete Toda chain”, TMF, 148:3 (2006), 387–397 ; Theoret. and Math. Phys., 148:3 (2006), 1199–1209 |
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2004 |
9. |
V. L. Vereshchagin, “Periodic Optical Pulses in Nonlinear Optical Fibers”, TMF, 141:2 (2004), 178–191 ; Theoret. and Math. Phys., 141:2 (2004), 1482–1493 |
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2001 |
10. |
Yu. N. Ovchinnikov, V. L. Vereshchagin, “Asymptotic behavior of weakly collapsing solutions of the nonlinear Schrödinger equation”, Pis'ma v Zh. Èksper. Teoret. Fiz., 74:2 (2001), 76–80 ; JETP Letters, 74:2 (2001), 72–76 |
1
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11. |
V. L. Vereshchagin, “Asymptotic expansions for partial solutions of the sixth Painlevé equation”, TMF, 128:2 (2001), 193–204 ; Theoret. and Math. Phys., 128:2 (2001), 996–1006 |
1
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2000 |
12. |
V. L. Vereshchagin, “The asymptotic behavior of solutions of the sine-Gordon equation with singularities zero”, Mat. Zametki, 67:3 (2000), 329–342 ; Math. Notes, 67:3 (2000), 274–285 |
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1999 |
13. |
V. L. Vereshchagin, “Quantization of one-phase potentials, and Painlevé equations”, Differ. Uravn., 35:6 (1999), 837–839 ; Differ. Equ., 35:6 (1999), 841–845 |
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1997 |
14. |
V. L. Vereshchagin, “Global asymptotic formulae for the fourth Painleve transcendent”, Mat. Sb., 188:12 (1997), 11–32 ; Sb. Math., 188:12 (1997), 1739–1760 |
3
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15. |
V. L. Vereshchagin, “Asimptotic behaviour of the solution of the Cauchy problem for the Volterra chain with step-like initial data”, TMF, 111:3 (1997), 335–344 ; Theoret. and Math. Phys., 111:3 (1997), 658–666 |
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1996 |
16. |
V. L. Vereshchagin, “Asymptotic classification of solutions to the first discrete Painlevé equation”, Sibirsk. Mat. Zh., 37:5 (1996), 995–1012 ; Siberian Math. J., 37:5 (1996), 876–892 |
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1990 |
17. |
V. L. Vereshchagin, “Spectral theory of one-phase solutions of a Volterra chain”, Mat. Zametki, 48:2 (1990), 145–148 |
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18. |
V. L. Vereshchagin, “Asymptotic integration of Volterra chains”, Uspekhi Mat. Nauk, 45:3(273) (1990), 187–188 ; Russian Math. Surveys, 45:3 (1990), 226–228 |
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1988 |
19. |
V. L. Vereshchagin, “Hamiltonian structure of averaged difference systems”, Mat. Zametki, 44:5 (1988), 584–595 ; Math. Notes, 44:5 (1988), 798–805 |
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Organisations |
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