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Vorob'ev Vladimir Sergeevich

Publications in Math-Net.Ru

  1. Универсальное уравнение состояния для критической и сверхкритических областей

    TVT, 59:6 (2021),  852–859
  2. Study of the phase boundary for $\rm C_6\rm F_6$ and $\rm SF_6$ under microgravity

    TVT, 58:3 (2020),  355–364
  3. Investigation of the phase transitions in cesium by the average atom model

    Keldysh Institute preprints, 2016, 100, 16 pp.
  4. The generalized scaling laws based on several deductions from the van der Waals equation

    TVT, 54:2 (2016),  186–196
  5. Thermodynamics of phase transitions in liquids in external fields

    TVT, 48:6 (2010),  1005–1030
  6. The effect of electrically induced convection in dielectric liquids on convective heat transfer

    TVT, 44:6 (2006),  892–902
  7. Nucleation Mechanism of Explosive Destruction of Conductors of High Energy Density

    TVT, 43:6 (2005),  905–918
  8. The field-trap effect under conditions of boiling of dielectric liquids in nonuniform electric fields

    TVT, 43:2 (2005),  249–255
  9. The thermodynamics of Lennard–Jones systems

    TVT, 42:3 (2004),  383–395
  10. A cavitation mechanism of material sputtering by slow multicharged ions

    Pis'ma v Zh. Èksper. Teoret. Fiz., 78:5 (2003),  737–741
  11. Cavitation model of micropoint explosion

    Pis'ma v Zh. Èksper. Teoret. Fiz., 76:7 (2002),  503–507
  12. What initiates the explosion of a current-carrying conductor?

    Pis'ma v Zh. Èksper. Teoret. Fiz., 75:8 (2002),  445–449
  13. Metastable states of liquid metal under conditions of electric explosion

    TVT, 39:5 (2001),  728–742
  14. Phase explosion of conductor with current

    TVT, 39:1 (2001),  101–107
  15. The importance of excited states in the thermodynamics of partially ionized plasma

    TVT, 38:4 (2000),  533–538
  16. Model description of crystalline and liquid states

    TVT, 34:3 (1996),  397–406
  17. A calculation of the Debye temperatures and Grueneisen coefficients for inert gases in the rarifacfion region

    TVT, 34:2 (1996),  203–207
  18. Thresholds of surface plasma formation by the interaction of laser pulses with a metal

    Kvantovaya Elektronika, 22:4 (1995),  374–376
  19. The thermodynamics of $\mathrm{C}_{60}$ fullerite as a system of close-packed spherically symmetric Molecules with short-range interaction

    TVT, 33:6 (1995),  862–866
  20. Investigation of liquid-vapor equilibrium using an interpolation equation of state

    TVT, 33:4 (1995),  557–564
  21. Threshold for gas breakdown initiated by an interaction of laser light with aerosol particles

    Kvantovaya Elektronika, 20:3 (1993),  264–270
  22. Plasma arising during the interaction of laser radiation with solids

    UFN, 163:12 (1993),  51–83
  23. One-dimensional expansion of a layer of evaporating matter into vacuum

    TVT, 30:1 (1992),  122–131
  24. Erosion jet breakdown accompanying pulsed irradiation of metals by a neodymium laser

    Kvantovaya Elektronika, 18:11 (1991),  1331–1332
  25. Plasma formation threshold in a vapor–gas mixture on the surface of a laser-heated metal

    Kvantovaya Elektronika, 18:8 (1991),  999–1002
  26. Influence of fluctuations of the size and number of surface microdefects on the thresholds of laser plasma formation

    Kvantovaya Elektronika, 17:8 (1990),  1044–1049
  27. Broad-range equation of state of water

    TVT, 28:3 (1990),  467–472
  28. Numerical study of some regimes of electrical explosion of wires

    TVT, 28:1 (1990),  18–23
  29. Surface laser plasma accompanying the heating and evaporation of microdefects

    Kvantovaya Elektronika, 15:12 (1988),  2537–2546
  30. Breakdown of a jet of molecular vapor with laser irradiation of nonmetallic materials

    TVT, 26:5 (1988),  852–858
  31. Nonstationary breakdown in a metal-vapor jet near an irradiated target

    TVT, 26:4 (1988),  667–670
  32. Recombination coefficient in nonideal plasma

    Dokl. Akad. Nauk SSSR, 296:3 (1987),  576–578
  33. Kinetics of the formation of a surface laser plasma in the absence of surface damage

    Kvantovaya Elektronika, 14:5 (1987),  1047–1054
  34. State of the vapor near an evaporating surface

    TVT, 25:3 (1987),  468–474
  35. Electrical-conductivity of completely ionized nonideal plasma

    TVT, 25:3 (1987),  430–434
  36. Breakdown of an erosion jet formed as a result of quasicontinuous laser irradiation of metals

    Kvantovaya Elektronika, 13:9 (1986),  1909–1911
  37. О механизме поглощения лазерного излучения в струе молекулярного пара

    TVT, 24:3 (1986),  609–612
  38. Theory of breakdown of molecular gases by laser radiation near a metal surface

    Kvantovaya Elektronika, 11:11 (1984),  2221–2226
  39. Theory of nonstationary kinetic ionization, recombination and population of excited-states

    TVT, 20:3 (1982),  401–411
  40. К расчету термодинамических функций газа многоэлектронных атомов

    TVT, 17:5 (1979),  897–905
  41. Low-temperature plasmas with nonequilibrium ionization

    UFN, 128:2 (1979),  233–271
  42. К расчету оптических свойств плазмы при повышенных давлениях

    TVT, 16:3 (1978),  464–472
  43. Investigation of the development of ionization instability in plasma with changing direction of mean current

    Dokl. Akad. Nauk SSSR, 236:4 (1977),  834–837
  44. К вопросу о составе равновесной плазмы

    TVT, 15:6 (1977),  1304–1306
  45. Электрон-ионные коррелированные пары в плазме и их влияние на электропроводность

    TVT, 15:1 (1977),  188–191
  46. Nearest-neighbor approximation in the thermodynamics of coulomb systems and plasmas

    TMF, 26:3 (1976),  364–375
  47. Thermodynamics of Coulomb systems

    TVT, 14:1 (1976),  204–207
  48. О распределении электронов по энергиям и уравнение ионизационного равновесия в частично ионизованной плазме

    TVT, 13:2 (1975),  245–250
  49. Построение вириального разложения с помощью кононического преобразования

    TVT, 12:6 (1974),  1137–1142
  50. Оптимизация мощности фарадеевских МГД-генераторов на неравновесной плазме

    TVT, 11:1 (1973),  161–166
  51. Особенности дебаевского экранирования и уравнение состояния частично ионизованной плазмы

    TVT, 10:5 (1972),  939–949
  52. Kinetics of impact-radiation ionization and recombination

    UFN, 107:3 (1972),  353–387
  53. Canonical transformation method in the thermodynamics of a partially ionized plasma

    TMF, 8:1 (1971),  109–118
  54. Concerning the Optimization of the Parameters of a Closed-Cycle MHD Generator Channel

    TVT, 9:1 (1971),  165–169
  55. On Determinating the Characteristics of a Magnetohydrodynamic Generator Operating on Nonequilibrium Plasma

    TVT, 9:1 (1971),  159–164
  56. Optical properties of burning gases. Mixtures of $\mathrm{CO}_2$ + $\mathrm{N}_2$

    TVT, 8:1 (1970),  1–11
  57. Неравновесная низкотемпературная плазма. IV Функции ионизации и рекомбинации

    TVT, 7:4 (1969),  593–603
  58. Неравновесная низкотемпературная плазма. III. Концентрация электронов в неравновесной плазме

    TVT, 7:2 (1969),  193–202
  59. Неравновесная низкотемпературная плазма

    TVT, 6:3 (1968),  369–380
  60. О причинах образования пика излучения в атомарных спектральных линиях неравновесного газа за ударной волной

    TVT, 5:3 (1967),  517–519
  61. Неравновесная низкотемпературная плазма. I. Распределение атомов по уровням

    TVT, 5:2 (1967),  201–213
  62. Влияние реабсорбции излучения на отклонение от термодинамического равновесия

    TVT, 4:4 (1966),  494–498

  63. In memory of Leon Mikhailovich Biberman

    UFN, 169:1 (1999),  111–112


© Steklov Math. Inst. of RAS, 2024