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Publications in Math-Net.Ru |
Citations |
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2003 |
1. |
E. P. Zhidkov, N. B. Skachkov, T. M. Solov'eva, “The accuracy estimation of the numerical solution of the spectral problem with the operator depending on the eigenvalue”, Matem. Mod., 15:1 (2003), 87–100 |
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1994 |
2. |
E. A. Dei, V. N. Kapshai, N. B. Skachkov, “Three-dimensional covariant one-time equations for a system of $n$ spinor particles”, TMF, 101:1 (1994), 69–84 ; Theoret. and Math. Phys., 101:1 (1994), 1207–1217 |
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1990 |
3. |
E. A. Dei, V. N. Kapshai, N. B. Skachkov, “Exact solutions of a class of quasipotential equations for a superposition of one-boson exchange quasipotentials”, TMF, 82:2 (1990), 188–198 ; Theoret. and Math. Phys., 82:2 (1990), 130–138 |
2
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1989 |
4. |
A. N. Sisakyan, N. B. Skachkov, I. L. Solovtsov, O. Yu. Shevchenko, “Gauge-invariant approach and infrared behavior of the spinor propagator”, TMF, 78:2 (1989), 258–266 ; Theoret. and Math. Phys., 78:2 (1989), 185–191 |
4
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1987 |
5. |
N. B. Skachkov, I. L. Solovtsov, O. Yu. Shevchenko, “Infrared asymptotic behavior of gauge-invariant propagator in quantum electrodynamics”, TMF, 71:1 (1987), 54–66 ; Theoret. and Math. Phys., 71:1 (1987), 376–385 |
3
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1986 |
6. |
V. N. Kapshai, V. I. Savrin, N. B. Skachkov, “Dependence of the quasipotential on the total energy of a two-particle system”, TMF, 69:3 (1986), 400–410 ; Theoret. and Math. Phys., 69:3 (1986), 1226–1233 |
15
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7. |
E. A. Dei, V. N. Kapshai, N. B. Skachkov, “Exact solution of quasipotential equations of general form with chromodynamic interaction”, TMF, 69:1 (1986), 55–68 ; Theoret. and Math. Phys., 69:1 (1986), 997–1006 |
6
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1984 |
8. |
G. A. Kozlov, S. P. Kuleshov, V. I. Savrin, V. V. Sanadze, N. B. Skachkov, “Decay of a bound state of A $\mu^+\mu^-$ pair into an $e^+e^-$ Dalitz pair and A photon”, TMF, 60:1 (1984), 24–36 ; Theoret. and Math. Phys., 60:1 (1984), 647–656 |
4
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1983 |
9. |
V. N. Kapshai, S. P. Kuleshov, N. B. Skachkov, “On a class of exact solutions of quasipotential equations”, TMF, 55:3 (1983), 349–360 ; Theoret. and Math. Phys., 55:3 (1983), 545–553 |
6
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10. |
V. N. Kapshai, N. B. Skachkov, “Exact solutions of quasipotential equations for the Coulomb potential and a linear confining potential”, TMF, 55:2 (1983), 236–245 ; Theoret. and Math. Phys., 55:2 (1983), 471–477 |
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11. |
V. N. Kapshai, N. B. Skachkov, “Covariant two-particle wave functions for model quasipotentials that admit exact solutions. II. Solutions in the relativistic configuration representation”, TMF, 55:1 (1983), 26–38 ; Theoret. and Math. Phys., 55:1 (1983), 330–338 |
10
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12. |
V. N. Kapshai, N. B. Skachkov, “Covariant two-particle wave functions for model quasipotentials that admit exact solutions. I. Solutions in momentum space”, TMF, 54:3 (1983), 406–415 ; Theoret. and Math. Phys., 54:3 (1983), 265–271 |
6
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13. |
V. I. Savrin, N. B. Skachkov, “Meson annihilation form factor and relativistic wave function for bound states”, TMF, 54:3 (1983), 372–380 ; Theoret. and Math. Phys., 54:3 (1983), 242–248 |
3
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14. |
N. B. Skachkov, I. L. Solovtsov, “Relativistic wave functions for a system of two spin $1/2$ quarks in a model with chromodynamic interaction”, TMF, 54:2 (1983), 183–192 ; Theoret. and Math. Phys., 54:2 (1983), 116–122 |
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15. |
V. I. Savrin, N. B. Skachkov, G. Yu. Tyumenkov, “Covariant three-dimensional equation for the wave function of the $\pi$-meson in the composite model of spinor quarks”, TMF, 54:2 (1983), 173–182 ; Theoret. and Math. Phys., 54:2 (1983), 110–116 |
2
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1982 |
16. |
V. N. Kapshai, A. D. Linkevich, V. I. Savrin, N. B. Skachkov, “Structure functions of pseudoscalar mesons in a composite model with chromodynamic interaction”, TMF, 53:3 (1982), 388–398 ; Theoret. and Math. Phys., 53:3 (1982), 1196–1203 |
2
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17. |
V. N. Kapshai, N. B. Skachkov, “Exact solution of covariant two-particle one-time equation with superposition of one-boson exchange quasipotentials”, TMF, 53:1 (1982), 32–42 ; Theoret. and Math. Phys., 53:1 (1982), 963–970 |
6
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18. |
A. D. Linkevich, V. I. Savrin, N. B. Skachkov, “Structure functions of relativistic systems composed of two spin 1/2 particles”, TMF, 53:1 (1982), 20–31 ; Theoret. and Math. Phys., 53:1 (1982), 955–962 |
12
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1981 |
19. |
A. V. Sidorov, N. B. Skachkov, “Description of the widths and spectra of the bound states of two relativistic fermions”, TMF, 46:2 (1981), 213–224 ; Theoret. and Math. Phys., 46:2 (1981), 141–149 |
9
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1980 |
20. |
N. B. Skachkov, I. L. Solovtsov, “Description of the form factor of a relativistic two-particle system in the covariant Hamiltonian formulation of quantum field theory”, TMF, 43:3 (1980), 330–342 ; Theoret. and Math. Phys., 43:3 (1980), 494–502 |
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1979 |
21. |
N. B. Skachkov, I. L. Solovtsov, “Covariant three-dimensional formulation of the composite quark model of mesons”, TMF, 41:2 (1979), 205–219 ; Theoret. and Math. Phys., 41:2 (1979), 977–986 |
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1975 |
22. |
N. B. Skachkov, “Asymptotic behavior of form factors and invariant description of the spatial structure of particles”, TMF, 25:3 (1975), 313–326 ; Theoret. and Math. Phys., 25:3 (1975), 1154–1163 |
11
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23. |
S. Shch. Mavrodiev, N. B. Skachkov, “Unitary representations of the Lorentz group and description of particles with spin in the quasipotential approach”, TMF, 23:1 (1975), 32–41 ; Theoret. and Math. Phys., 23:1 (1975), 328–335 |
1
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24. |
N. B. Skachkov, “Relativistic one-boson exchange amplitudes as potentials of quantum mechanics in Lobachevskii space”, TMF, 22:2 (1975), 213–222 ; Theoret. and Math. Phys., 22:2 (1975), 149–156 |
11
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1972 |
25. |
M. D. Mateev, R. M. Mir-Kassimov, N. B. Skachkov, “Quasipotential equation for particles with spin 1/2 in the configuration representation and relativistic spherical spinors”, TMF, 10:1 (1972), 3–10 ; Theoret. and Math. Phys., 10:1 (1972), 1–6 |
2
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1971 |
26. |
V. R. Garsevanishvili, V. G. Kadyshevskii, R. M. Mir-Kassimov, N. B. Skachkov, “Representation for relativistic scattering amplitude at high energies”, TMF, 7:2 (1971), 203–216 ; Theoret. and Math. Phys., 7:2 (1971), 473–484 |
5
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1970 |
27. |
N. B. Skachkov, “Analytic properties of relativistic scattering amplitude in the quasipotential approach”, TMF, 5:1 (1970), 57–65 ; Theoret. and Math. Phys., 5:1 (1970), 977–983 |
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