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Publications in Math-Net.Ru |
Citations |
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2023 |
1. |
S. A. Maslov, V. B. Bobrov, S. A. Triger, “Поперечная диэлектрическая проницаемость невырожденной электронной плазмы со столкновениями”, TVT, 61:4 (2023), 492–496 |
2. |
V. B. Bobrov, “On the closed interpolation equation of state for a simple liquid”, TVT, 61:3 (2023), 349–357 ; High Temperature, 61:3 (2023), 320–327 |
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2022 |
3. |
V. B. Bobrov, “Statistical thermodynamics of the Coulomb system and adiabatic approximation”, TVT, 60:4 (2022), 496–499 ; High Temperature, 60:4 (2022), 446–449 |
1
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2021 |
4. |
V. B. Bobrov, “On the high-frequency energy distribution of equilibrium radiation in an ideal electron plasma”, TVT, 59:4 (2021), 485–491 ; High Temperature, 60:Suppl. 1 (2022), S1–S6 |
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2020 |
5. |
V. B. Bobrov, “Inhomogeneous electron density in the static field of nuclei”, TMF, 202:1 (2020), 98–115 ; Theoret. and Math. Phys., 202:1 (2020), 89–103 |
1
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6. |
V. B. Bobrov, “On the self-consistency conditions in the statistical thermodynamics of the Coulomb system”, TVT, 58:5 (2020), 758–763 ; High Temperature, 58:5 (2020), 689–693 |
2
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2019 |
7. |
V. B. Bobrov, “Low-frequency asymptotics of the spectral energy distribution of equilibrium radiation in an electron plasma”, Zhurnal Tekhnicheskoi Fiziki, 89:7 (2019), 1025–1030 ; Tech. Phys., 64:7 (2019), 966–971 |
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2018 |
8. |
V. B. Bobrov, S. A. Triger, “To the theory of inhomogeneous electron gas”, Zhurnal Tekhnicheskoi Fiziki, 88:8 (2018), 1128–1136 ; Tech. Phys., 63:8 (2018), 1092–1100 |
3
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9. |
V. B. Bobrov, “High-frequency asymptotic behavior of the spectral energy distribution of equilibrium radiation in a degenerate electron plasma”, Zhurnal Tekhnicheskoi Fiziki, 88:2 (2018), 168–173 ; Tech. Phys., 63:2 (2018), 160–166 |
2
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10. |
V. B. Bobrov, S. A. Triger, “Bose–Einstein condensate and singularities of the frequency dispersion of the permittivity in a disordered Coulomb system”, TMF, 194:3 (2018), 468–480 ; Theoret. and Math. Phys., 193:3 (2018), 404–414 |
2
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11. |
V. B. Bobrov, S. A. Triger, “On temperature effects in the correlation functions of a degenerate electron plasma”, TVT, 56:2 (2018), 180–184 ; High Temperature, 56:2 (2018), 173–176 |
1
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2017 |
12. |
V. B. Bobrov, “Thermodynamics of a quantum gas and a two-particle Green’S function”, Pis'ma v Zh. Èksper. Teoret. Fiz., 106:6 (2017), 365–367 ; JETP Letters, 106:6 (2017), 390–392 |
4
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13. |
V. B. Bobrov, S. A. Triger, “Quantum effects in the transverse dielectric permittivity of a Maxwellian plasma”, TMF, 192:3 (2017), 523–535 ; Theoret. and Math. Phys., 192:3 (2017), 1396–1407 |
14
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14. |
V. B. Bobrov, “On the transverse dielectric permittivity of degenerate electron plasma”, TVT, 55:4 (2017), 489–492 ; High Temperature, 55:4 (2017), 473–476 |
8
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15. |
V. B. Bobrov, “On statistical theory of rarefied gas in the coulomb model of matter. Particle identity and effective interaction potential of initial atoms”, TVT, 55:2 (2017), 179–188 ; High Temperature, 55:2 (2017), 174–182 |
3
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16. |
V. B. Bobrov, S. A. Triger, O. F. Petrov, “On the relationship between microcanonical and canonical Gibbs distributions”, TVT, 55:1 (2017), 154–157 ; High Temperature, 55:1 (2017), 158–161 |
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2016 |
17. |
V. B. Bobrov, S. A. Triger, “High-frequency spectral distribution of the equilibrium radiation energy in a plasma”, TMF, 187:1 (2016), 104–113 ; Theoret. and Math. Phys., 187:1 (2016), 539–547 |
18
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18. |
V. B. Bobrov, “On the free energy of liquid-metal plasma”, TVT, 54:3 (2016), 475–478 ; High Temperature, 54:3 (2016), 447–450 |
8
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2015 |
19. |
V. B. Bobrov, I. M. Sokolov, S. A. Triger, “On the spectral distribution of the energy of equilibrium radiation in matter”, Pis'ma v Zh. Èksper. Teoret. Fiz., 101:5 (2015), 326–329 ; JETP Letters, 101:5 (2015), 299–302 |
24
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20. |
V. B. Bobrov, S. A. Triger, “Critical opalescence and the true dielectric state in a Coulomb system”, TMF, 183:1 (2015), 120–137 ; Theoret. and Math. Phys., 183:1 (2015), 553–566 |
2
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21. |
V. B. Bobrov, V. Ya. Mendeleev, S. A. Triger, “An exact relation for the chemical potential of a quasi-classical system”, TVT, 53:4 (2015), 634–635 ; High Temperature, 53:4 (2015), 599–600 |
2
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2014 |
22. |
V. B. Bobrov, “Permittivity and one-particle distribution functions in the thermodynamics of a Coulomb system”, TMF, 179:2 (2014), 251–266 ; Theoret. and Math. Phys., 179:2 (2014), 596–608 |
2
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23. |
V. B. Bobrov, “Statistical theory of rarified gases in the Coulomb model of substance: Adiabatic approximation and initial atoms”, TMF, 178:3 (2014), 433–448 ; Theoret. and Math. Phys., 178:3 (2014), 374–386 |
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2013 |
24. |
V. B. Bobrov, V. Ya. Mendeleyev, S. A. Trigger, G. J. F. van Heijst, P. P. J. M. Schram, “The theory of a metal-insulator transition at zero temperature and features of the dielectric function in the Coulomb model of matter”, TVT, 51:4 (2013), 511–519 ; High Temperature, 51:4 (2013), 457–464 |
4
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2011 |
25. |
V. B. Bobrov, S. A. Triger, “The Kramers–Kronig Relations for Permittivity, “True” Screening Radius, and Critical Point of a Coulomb System”, TVT, 49:4 (2011), 513–523 ; High Temperature, 49:4 (2011), 495–505 |
10
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1995 |
26. |
V. B. Bobrov, “One inverse problem in the theory of liquid metals”, TMF, 105:3 (1995), 462–470 ; Theoret. and Math. Phys., 105:3 (1995), 1566–1573 |
1
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27. |
V. B. Bobrov, “A theory of degenerate electron liquid: The dielectric permeability and the equation of state”, TVT, 33:6 (1995), 867–873 ; High Temperature, 33:6 (1995), 863–869 |
2
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28. |
V. B. Bobrov, “Static dielectric permeability of a Coulomb system in the long-wave limit and the perturbation theory”, TVT, 33:4 (1995), 504–508 ; High Temperature, 33:4 (1995), 500–504 |
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1994 |
29. |
V. B. Bobrov, “A theory of degenerate electron fluid: The equation of state and the one-particle distribution function”, TVT, 32:4 (1994), 497–502 ; High Temperature, 32:4 (1994), 463–468 |
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30. |
E. A. Allakhyarov, V. B. Bobrov, S. A. Triger, “The structure factor of liquid metals for small wave vectors and the one-component plasma model”, TVT, 32:3 (1994), 363–372 ; High Temperature, 32:3 (1994), 341–349 |
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1993 |
31. |
V. B. Bobrov, S. A. Triger, “The effective collision frequency method in the theory of the coulomb system conductivity II. The strong interionic interaction and the structure of a plasma”, TMF, 97:3 (1993), 420–430 ; Theoret. and Math. Phys., 97:3 (1993), 1386–1392 |
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32. |
V. B. Bobrov, “The reflection coefficient of an isotropic gyrotropic medium”, TVT, 31:5 (1993), 808–811 ; High Temperature, 31:5 (1993), 744–746 |
33. |
E. A. Allakhyarov, V. B. Bobrov, “Kramers–Kronig relations for the dielectric permeability of classical plasma and the spectrum of plasma oscillation”, TVT, 31:4 (1993), 535–541 ; High Temperature, 31:4 (1993), 485–491 |
34. |
V. B. Bobrov, E. A. Allakhyarov, “The calculation of the electrical conductivity of fully ionized plasma under conditions of random degeneracy of electrons: Liquid-metal plasma”, TVT, 31:3 (1993), 352–356 ; High Temperature, 31:3 (1993), 313–317 |
1
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35. |
E. A. Allakhyarov, V. B. Bobrov, “The temperature dependence of the electric resistance of liquid lithium”, TVT, 31:2 (1993), 207–212 ; High Temperature, 31:2 (1993), 173–178 |
3
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36. |
E. A. Allakhyarov, V. B. Bobrov, S. A. Triger, “The static structure factor and electrical conductivity of expanded liquid cesium”, TVT, 31:1 (1993), 44–53 ; High Temperature, 31:1 (1993), 40–48 |
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1992 |
37. |
V. B. Bobrov, Yu. P. Vlasov, S. A. Triger, “On the one-atom scattering spectrum in superfluid helium”, Dokl. Akad. Nauk, 325:6 (1992), 1172–1175 |
38. |
V. B. Bobrov, S. A. Triger, “Effective collision frequency method in the theory of the conductivity of Coulomb systems. I. Weakly nonideal plasma and the classical limit”, TMF, 91:3 (1992), 510–523 ; Theoret. and Math. Phys., 91:3 (1992), 683–691 |
3
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39. |
E. A. Allakhyarov, V. B. Bobrov, S. A. Triger, “The effect of non-Coulomb interactions on the spectrum of plasma oscillations in a classical two-component plasma”, TVT, 30:5 (1992), 876–884 ; High Temperature, 30:5 (1992), 716–723 |
40. |
V. B. Bobrov, Yu. P. Vlasov, S. A. Triger, “Theory of isothermal compressibility of two-component liquid metal plasmas”, TVT, 30:4 (1992), 641–647 ; High Temperature, 30:4 (1992), 521–526 |
2
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41. |
V. B. Bobrov, “Calculating the electrical conductivity of a fully ionized plasma with arbitrary electron degeneracy. I. Technique for solving the linearized kinetic equation”, TVT, 30:2 (1992), 214–222 ; High Temperature, 30:2 (1992), 161–169 |
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1991 |
42. |
V. B. Bobrov, S. A. Triger, “Exact linearized collision integral for plasma”, Dokl. Akad. Nauk SSSR, 319:1 (1991), 154–157 |
2
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43. |
V. B. Bobrov, N. I. Klyuchnikov, S. A. Triger, “Exact relations for structure factor of a Coulomb system”, TMF, 89:2 (1991), 263–277 ; Theoret. and Math. Phys., 89:2 (1991), 1198–1208 |
22
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44. |
V. B. Bobrov, “Exact relation for photon distribution function in a medium in the long-wavelength limit”, TMF, 88:1 (1991), 141–145 ; Theoret. and Math. Phys., 88:1 (1991), 773–776 |
9
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45. |
V. B. Bobrov, R. Redmer, G. Röpke, S. A. Triger, “Distribution function and conductivity of a system of charged particles in linear response theory: the nonequilibrium statistical operator method and the kinetic equation method”, TMF, 86:3 (1991), 425–437 ; Theoret. and Math. Phys., 86:3 (1991), 293–302 |
4
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46. |
V. B. Bobrov, R. Redmer, G. Röpke, S. A. Triger, “Distribution function and conductivity of a system of charged particles in linear response theory: Kubo theory and the nonequilibrium statistical operator method”, TMF, 86:2 (1991), 300–311 ; Theoret. and Math. Phys., 86:2 (1991), 207–215 |
5
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47. |
A. M. Belyaev, V. B. Bobrov, S. A. Triger, “Spectrum of collective excitations in liquid metals”, TVT, 29:2 (1991), 261–267 ; High Temperature, 29:2 (1991), 196–201 |
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1990 |
48. |
V. B. Bobrov, S. A. Triger, “Linearized distribution function for plasma in electrical field of arbitrary frequency”, Dokl. Akad. Nauk SSSR, 310:4 (1990), 850–853 |
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1986 |
49. |
V. B. Bobrov, S. A. Triger, “On the absence of collision damping of plasma oscillations”, Dokl. Akad. Nauk SSSR, 287:1 (1986), 104–107 |
1
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1985 |
50. |
V. B. Bobrov, S. A. Triger, “Существование $X$-точки в излучательной способности простых металлов”, TVT, 23:3 (1985), 613–615 |
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