Fluid modeling of magnetized plasmas with anisotropic temperatures

被引:4
|
作者
Sulem, P. L. [1 ]
Passot, T. [1 ]
机构
[1] Univ Nice Sophia Antipolis, CNRS, Observ Cote Azur, F-04304 Nice 04, France
来源
WAVES AND INSTABILITIES IN SPACE AND ASTROPHYSICAL PLASMAS | 2012年 / 1439卷
关键词
magnetized plasmas; turbulence; fluid models; temperature anisotropy; microinstabilities; mirror modes; WHISTLER WAVE-PROPAGATION; LANDAU-FLUID; ELECTRON ACCELERATION; ALFVEN WAVES; ASTROPHYSICAL GYROKINETICS; COLLISIONLESS PLASMAS; CLUSTER OBSERVATIONS; MIRROR STRUCTURES; ENERGY CASCADE; LINEAR-THEORY;
D O I
10.1063/1.3701354
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We discuss a fluid model for magnetized plasmas that extends the anisotropic magnetohydrodynamics down to the ion gyroscale and below, by retaining low-frequency kinetic effects such as Landau damping and finite Larmor radius (FLR) corrections. Landau damping depletes compressible effects and inhibits longitudinal transfer, but also leads to a correct description of the mirror instability threshold, while FLR corrections arrest the mirror instability at small scales and ensure an accurate dispersion relation for kinetic Alfven waves. This model provides an efficient tool to describe the solar wind dynamics. Simulations of non-resonant ion perpendicular heating under the effect of turbulence driven by kinetic Alfven waves, together with the constraining effect of the resulting mirror instability that maintains the system near threshold are in particular discussed and successfully compared with slow solar wind observations.
引用
收藏
页码:94 / 110
页数:17
相关论文
共 50 条
  • [21] Effect of Anisotropic Ion Pressure on Solitary Waves in Magnetized Dusty Plasmas
    Adnan, M.
    Mahmood, S.
    Qamar, A.
    CONTRIBUTIONS TO PLASMA PHYSICS, 2014, 54 (08) : 724 - 734
  • [22] The anisotropic transfer of resonance photons in hot plasmas on magnetized white dwarfs
    Terada, Y
    Ishida, M
    Makishima, K
    PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF JAPAN, 2004, 56 (03) : 533 - 546
  • [23] Modeling of Stark–Zeeman Lines in Magnetized Hydrogen Plasmas
    J. Rosato
    H. Bufferand
    H. Capes
    M. Koubiti
    L. Godbert-Mouret
    Y. Marandet
    R. Stamm
    Journal of Astrophysics and Astronomy, 2015, 36
  • [24] CYCLOTRON INSTABILITIES OF A MAGNETIZED ELECTRON-PLASMA WITH ANISOTROPIC TEMPERATURES
    CHIUDERI, C
    EINAUDI, G
    GIACHETTI, R
    JOURNAL OF PLASMA PHYSICS, 1977, 17 (JUN) : 453 - 465
  • [25] Full fluid moment model for low temperature magnetized plasmas
    Sahu, Rupali
    Mansour, Adnan R.
    Hara, Kentaro
    PHYSICS OF PLASMAS, 2020, 27 (11)
  • [26] On gyrokinetic-fluid model for electromagnetic fluctuations in magnetized plasmas
    Chen, Haotian
    Chen, Liu
    Viezzer, Eleonora
    Garcia-Munoz, Manuel
    Li, Jiquan
    PLASMA PHYSICS AND CONTROLLED FUSION, 2023, 65 (06)
  • [27] Determination of presheath lengths in magnetized plasmas by using fluid theories
    Chung, KS
    JOURNAL OF THE KOREAN PHYSICAL SOCIETY, 1998, 33 (01) : 54 - 58
  • [28] Collisional relaxation of bi-Maxwellian plasma temperatures in magnetized plasmas
    Yoon, Peter H.
    PHYSICS OF PLASMAS, 2016, 23 (07)
  • [29] Modeling the effect of anisotropic pressure on tokamak plasmas normal modes and continuum using fluid approaches
    Qu, Z. S.
    Hole, M. J.
    Fitzgerald, M.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2015, 57 (09)
  • [30] The Reflection of Electromagnetic Waves from Anisotropic Magnetized Plasmas Coating on a Metal Plane
    Rao, Zhen-Min
    He, Si-Yuan
    Zhang, Yun-Hua
    Zhu, Guo-Qiang
    2016 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS), 2016, : 2265 - 2269