The kinetic treatment of space plasmas

被引:0
|
作者
Lemaire, JF [1 ]
Pierrard, V [1 ]
机构
[1] Catholic Univ Louvain, Inst G Lemaitre, B-1180 Brussels, Belgium
来源
RAREFIED GAS DYNAMICS | 2003年 / 663卷
关键词
D O I
暂无
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
To describe transport in space plasmas hydrodynamic and kinetic approaches have been proposed and used. These approaches are appropriate for separate collisional regimes. Hydrodynamics is a valid approximation of the general transport equations in highly collision-dominated fluids. In low-density plasmas where the Knudsen number is larger than I like at high altitude in planetary and stellar exospheres, only a kinetic treatment is appropriate. Collisionless models of the high altitude planetary atmospheres have been first based on the solution of the Lionville-Vlasov equation. They proved to be very useful zero-order kinetic approximations since they have demonstrated the importance of the internal polarization electric field in the acceleration process of the solar wind and polar wind protons. Higher order kinetic approximations have been more recently developed. Numerical solutions of the Fokker-Planck equation for the velocity distribution of the electrons in the solar wind and W ions in the polar wind have now been obtained. The major and key differences between the results of these different approaches are illustrated through solar wind and terrestrial polar wind applications with comparison of the particle velocity distribution functions found in the different models.
引用
收藏
页码:857 / 864
页数:8
相关论文
共 50 条
  • [1] The Kinetic Approach to Model Space Plasmas
    Pierrard, V.
    NUMERICAL MODELING OF SPACE PLASMA FLOWS ASTRONUM-2009, 2010, 429 : 233 - 238
  • [2] Kinetic Alfven wave turbulence in space plasmas
    Sharma, R. P.
    Kumar, Sachin
    PHYSICS LETTERS A, 2010, 374 (34) : 3491 - 3498
  • [3] Transport Ratios of the Kinetic Alfven Mode in Space Plasmas
    Narita, Yasuhito
    Roberts, Owen Wyn
    Voeroes, Zoltan
    Hoshino, Masahiro
    FRONTIERS IN PHYSICS, 2020, 8
  • [4] A nonspecialist's guide to kinetic simulations of space plasmas
    Winske, D
    Omidi, N
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1996, 101 (A8) : 17287 - 17303
  • [5] MAGNETIC NULL POINTS IN KINETIC SIMULATIONS OF SPACE PLASMAS
    Olshevsky, Vyacheslav
    Deca, Jan
    Divin, Andrey
    Peng, Ivy Bo
    Markidis, Stefano
    Innocenti, Maria Elena
    Cazzola, Emanuele
    Lapenta, Giovanni
    ASTROPHYSICAL JOURNAL, 2016, 819 (01):
  • [6] A survey of fluid and kinetic instabilities relevant to space and laboratory plasmas
    Srinivasan, Bhuvana
    Cagas, Petr
    Masti, Robert
    Rathod, Chirag
    Shetty, Rajath
    Song, Yang
    RADIATION EFFECTS AND DEFECTS IN SOLIDS, 2019, 174 (1-2): : 31 - 45
  • [7] Comparative study of gyrokinetic, hybrid-kinetic and fully kinetic wave physics for space plasmas
    Told, D.
    Cookmeyer, J.
    Muller, F.
    Astfalk, P.
    Jenko, F.
    NEW JOURNAL OF PHYSICS, 2016, 18
  • [8] Excitation of kinetic Alfven turbulence by MHD waves and energization of space plasmas
    Voitenko, Y
    Goossens, M
    NONLINEAR PROCESSES IN GEOPHYSICS, 2004, 11 (5-6) : 535 - 543
  • [9] A kinetic equation for unstable plasmas in a finite space-time domain
    Baalrud, S. D.
    Callen, J. D.
    Hegna, C. C.
    PHYSICS OF PLASMAS, 2008, 15 (09)
  • [10] LABORATORY EXPERIMENT ON KINETIC ALFVEN WAVES IN CONNECTION WITH PHENOMENA IN SPACE PLASMAS
    AMAGISHI, Y
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 1992, 20 (06) : 622 - 625