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Ulyanov Konstantin Nikolaevich

Publications in Math-Net.Ru

  1. Mathematical model of the diffusion mode of a short, high-current vacuum arc in the axial magnetic field

    TVT, 58:6 (2020),  844–855
  2. Theory of high-voltage glow discharge with allowance for the thermal emission of electrons

    TVT, 57:3 (2019),  323–327
  3. Numerical simulation of the anode region of a high-current vacuum-arc discharge and the Bohm criterion

    TVT, 52:6 (2014),  815–824
  4. Switching of the Vacuum-Arc Discharge Direct Current

    TVT, 52:2 (2014),  198–204
  5. Dynamics studies of cathode spots in a vacuum-arc discharge with ring electrodes

    TVT, 51:2 (2013),  176–182
  6. Theory of the negative anode drop in low-pressure discharges

    TVT, 51:1 (2013),  13–23
  7. The hydrodynamic theory of a positive discharge column in an axial magnetic field

    TVT, 50:3 (2012),  323–328
  8. A positive column of electric discharge in a transverse magnetic field

    TVT, 50:1 (2012),  24–32
  9. Diffusion positive column of electric discharge in transverse magnetic field

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:5 (2011),  15–23
  10. Study of the Direct Current Breakage Process in an External Nonuniform Magnetic Field

    TVT, 49:5 (2011),  649–657
  11. Two-Dimensional Kinetic Model of a Short High-Current Vacuum Arc Discharge

    TVT, 49:3 (2011),  323–332
  12. Two-dimensional kinetic model of short high-current vacuum-arc discharge

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 36:5 (2010),  78–85
  13. An experimental study of the dynamics of formation of plasma in a vacuum-arc discharge

    TVT, 47:2 (2009),  175–182
  14. The parameters of electron avalanches and the runaway of electrons in strong electric fields

    TVT, 46:4 (2008),  486–494
  15. A theoretical study of the impact of magnetic field of Hall current on the parameters of a high-current vacuum-arc discharge

    TVT, 46:2 (2008),  185–196
  16. Critical flow of high-speed ions in a high-current vacuum-arc discharge

    TVT, 45:4 (2007),  499–509
  17. The effect of axial magnetic filed on the process of anode spot formation in a vacuum-arc discharge with $\text{CuCr}50$ electrodes

    TVT, 45:1 (2007),  12–18
  18. The effect of axisymmetric two-dimensional magnetic field on the configuration of vacuum-arc plasma

    TVT, 44:2 (2006),  174–179
  19. A two-dimensional mathematical model of a short vacuum arc in external magnetic field: results of numerical calculations

    TVT, 44:1 (2006),  25–31
  20. A Two-Dimensional Mathematical Model of a Short Vacuum Arc in External Magnetic Field

    TVT, 43:6 (2005),  845–854
  21. The Runaway of Electrons and the Formation of Beams in Glow Discharges

    TVT, 43:5 (2005),  645–656
  22. An experimental study of the effect of nonuniform axisymmetric magnetic field on the breaking of the current of a vacuum-arc discharge

    TVT, 42:6 (2004),  850–855
  23. The effect of the flow of atoms sputtered from the anode on the flow of current in a vacuum arc

    TVT, 42:2 (2004),  198–207
  24. The effect of external magnetic field on a vacuum arc

    TVT, 41:4 (2003),  496–502
  25. A physical model of anode spot formation in a high-current vacuum arc

    TVT, 41:2 (2003),  167–172
  26. Effect of the angular distribution of cathode ions on the current flow in a high-current vacuum arc

    TVT, 41:1 (2003),  5–15
  27. The Effect of the Angular and Radial Distributions of Trajectories on the Structure of Axisymmetric Electron and Ion Beams with Compensated Charge in a Longitudinal Magnetic Field

    TVT, 40:6 (2002),  867–874
  28. Nondiffusion Theory of Electric Probes

    TVT, 40:1 (2002),  5–12
  29. Critical conditions of a high-current vacuum arc

    TVT, 39:5 (2001),  699–704
  30. Two-dimensional model of plasma cathode with an open plasma boundary

    TVT, 39:4 (2001),  539–546
  31. Mathematical model of positive column of electric discharge in the nondiffusion approximation

    TVT, 38:3 (2000),  367–373
  32. Singularities of interaction between a cathode stream and anode vapors in a vacuum arc: Numerical simulation results

    TVT, 38:1 (2000),  12–18
  33. Singularities of interaction between a cathode stream and anode vapors in a vacuum arc: Theoretical model

    TVT, 37:5 (1999),  693–699
  34. The balance of energy of electrons in a high-current vacuum arc

    TVT, 37:4 (1999),  540–545
  35. Superdense glow discharge: Theoretical model of the cathode region

    TVT, 37:3 (1999),  363–373
  36. Two-dimensional model of electron accelerator with plasma cathode

    TVT, 37:2 (1999),  183–187
  37. Physical and mathematical models of plasma cathode with grid stabilization of plasma boundary

    TVT, 36:1 (1998),  25–32
  38. A mathematical model of formation of a leader channel step during breakdown of electronegative gases

    TVT, 32:1 (1994),  3–11
  39. A mechanism for the stepwise propagation of a leader in electronegative gases

    TVT, 31:3 (1993),  339–343
  40. Dynamics of vacuum-arc quenching. II. Influence of slow ions on the electric-strength recovery and arc reignition

    TVT, 30:5 (1992),  854–861
  41. Dynamics of vacuum-arc quenching. Formation of slow atoms and ions in electrode gap

    TVT, 30:4 (1992),  679–685
  42. The $\mathrm{SF}_6$ pulse corona formation mechanism

    TVT, 28:2 (1990),  227–235
  43. Нелокальная ионизация газа в неоднородном электрическом поле

    TVT, 27:4 (1989),  807–810
  44. Ignition and development of a pulsed discharge in transformer oil in a sharply nonuniform field

    TVT, 27:3 (1989),  425–430
  45. Плотность тока в катодных пятнах несамостоятельного тлеющего разряда

    TVT, 27:1 (1989),  171–173
  46. Вольт-амперные характеристики плоского диода с аргоновым наполнением

    TVT, 26:5 (1988),  1015–1016
  47. Starting stage of breakdown in $\mathrm{SF}_6$

    TVT, 26:5 (1988),  843–851
  48. Structure of cathode spots in a non-self-sustained glow-discharge

    TVT, 26:4 (1988),  644–650
  49. Probe diagnostics of $3$-component plasmas

    TVT, 26:3 (1988),  582–588
  50. DYNAMICS OF THE FORMATION OF A BREAKDOWN INITIAL-STAGE IN NITROGEN-ELECTRICAL GAS-MIXTURES IN THE HETEROGENEOUS INTERVAL

    Zhurnal Tekhnicheskoi Fiziki, 57:7 (1987),  1276–1284
  51. Instability of a glow-discharge near the electrodes

    TVT, 25:6 (1987),  1073–1079
  52. Двумерный расчет несамостоятельного разряда с учетом газодинамики

    TVT, 25:2 (1987),  396–399
  53. Formation of a current-conducting channel in a non-self-maintained discharge with nonuniform external ionization

    TVT, 24:3 (1986),  463–467
  54. INVESTIGATION OF SHOCK-WAVES IN THE AIR DURING THE EVAPORATING RADIATION EFFECT ON THE LIQUID SURFACE

    Zhurnal Tekhnicheskoi Fiziki, 55:4 (1985),  814–816
  55. Investigating the conditions of townsend discharge ignition in helium by the Monte-Carlo method

    TVT, 23:4 (1985),  673–676
  56. Current channel formation in the plasma of a non-self-sustaining discharge for a plane plane gap with a hemispherical projection

    TVT, 23:3 (1985),  430–434
  57. Формирование начальной стадии токового канала в несамостоятельном тлеющем разряде

    TVT, 22:3 (1984),  610–612
  58. Dynamics of the current channel in a non-self-sustained discharge plasma

    TVT, 22:3 (1984),  449–456
  59. Impedance of a cylindrical probe in a non-isothermal locally collisional plasma. II

    TVT, 21:6 (1983),  1179–1185
  60. Impedance of a flat probe in a non-isothermal locally collisional plasma

    TVT, 21:3 (1983),  538–543
  61. Avalanche streamer transition in $\mathrm{SF}_6$

    TVT, 21:2 (1983),  234–239
  62. Current-channel formation dynamics in a non-self-maintained discharge plasma

    TVT, 21:1 (1983),  30–37
  63. Эффективный коэффициент рекомбинации в плазме $\mathrm{He}$ при высоком давлении

    TVT, 20:6 (1982),  1188–1189
  64. Effects of ionization inhomogeneity on the charged-particle balance in a non-self-maintaining discharge in oxygen

    TVT, 20:5 (1982),  842–847
  65. Mathematical-model of avalanche streamer transition

    TVT, 20:2 (1982),  193–200
  66. К вопросу об аддитивности энерговклада в несамостоятельный разряд в импульсно-периодическом режиме

    TVT, 19:6 (1981),  1309–1310
  67. "Быстрый" нагрев водорода в несамостоятельном разряде

    TVT, 19:5 (1981),  1097–1099
  68. Plasma streamers

    TVT, 19:5 (1981),  909–916
  69. Study of fast heating of oxygen in a non-self-sustaining discharge

    TVT, 19:4 (1981),  720–728
  70. Critical parameters of a high-voltage glow-discharge

    TVT, 19:1 (1981),  41–46
  71. Electrical and Energy Characteristics of an Externally Maintained Pulsed Discharge In a Flowing Gas

    TVT, 18:3 (1980),  475–482
  72. Эффективность возбуждения вращательных состояний окиси углерода

    TVT, 18:2 (1980),  424–426
  73. Probe Method of Diagnosis of a Non-Self-Maintained Discharge Plasma

    TVT, 18:1 (1980),  164–168
  74. Instability of non-self-sustaining glow discharge following removal of ionizing beam

    TVT, 17:6 (1979),  1167–1171
  75. Теория плазменного диода

    TVT, 17:5 (1979),  949–959
  76. Изучение разряда в электроионизационном лазере, работающем в частотном режиме с низкой скважностью

    TVT, 17:2 (1979),  225–235
  77. Теория высоковольтного тлеющего разряда

    TVT, 16:6 (1978),  1121–1129
  78. Зондовая диагностика плазмы высокого давления при различных температурах зонда и плазмы

    TVT, 16:3 (1978),  492–496
  79. Superheating current instability in molecular gases

    TVT, 13:3 (1975),  656–659
  80. Instability of an independent glow discharge

    TVT, 13:1 (1975),  192–193
  81. Теория нормального тлеющего разряда при средних давлениях

    TVT, 10:5 (1972),  931–938
  82. Theory of a plasma cathode

    TVT, 8:1 (1970),  12–16
  83. Электрическая дуга в потоке аргона с цезием при наличии магнитного поля

    TVT, 6:1 (1968),  23–29
  84. Квазистационарная теория нестационарных процессов

    TVT, 4:5 (1966),  601–605
  85. Функция распределения электронов по скоростям в неравновесной плазме

    TVT, 4:3 (1966),  314–323
  86. Вывод уравнений баланса для неравновесной плазмы

    TVT, 3:4 (1965),  536–546
  87. Стационарные и нестационарные процессы в неравновесной плазме

    TVT, 2:6 (1964),  842–851
  88. Рекомбинационный распад неизотермической плазмы

    TVT, 2:4 (1964),  510–516
  89. Рекомбинационный распад неравновесной неизотермической плазмы

    TVT, 2:2 (1964),  137–141

  90. Расчет предельных характеристик несамостоятельного тлеющего разряда (№ 5680-82 Деп. от 13.IX.1982)

    TVT, 21:2 (1983),  413


© Steklov Math. Inst. of RAS, 2026