Laws for electron pressure variations across a collisionless shock

被引:1
|
作者
Gueret, B [1 ]
Lembege, B [1 ]
Belmont, G [1 ]
机构
[1] UVSQ, CNRS, Ctr Etud Environm Terr & Planetaires, F-78140 Velizy, France
来源
关键词
D O I
10.1029/97JA02258
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In order to characterize the electron pressure variations across an oblique collisionless shock, statistical methods are applied to the results of two-dimensional (2-D) full particle electromagnetic simulations. Local correlations are looked for between the spatial variations of the pressures p(parallel to) and p(perpendicular to) (parallel and perpendicular to the local magnetic field) throughout the shock profile and the corresponding variations of the density n and the magnetic field modulus B at the same location. Different orders in regression laws are successively analyzed, including me most general 4-D regressions p(perpendicular to)p(parallel to)(-u)n(-v)B(-2w) = constant, which test the degree of invariance of the quantities p(perpendicular to)p(parallel to)(-u)n(-v)B(-2w), the reduced 3-D laws p(perpendicular to)n(-a perpendicular to)B(-2b perpendicular to) = cst, p(parallel to)n(-a parallel to)B(-2b parallel to) = cst (as in CGL theory), and the reduced 2-D correlations laws p perpendicular to n(-gamma perpendicular to) = cst, p(parallel to)n(-gamma parallel to) = cst, nB(-Cp) = cst (polytropic forms). Coefficients are determined quantitatively for each law. The use of these different regressions laws allows to check(1) where local correlations between these four quantities do exist at a given scale and, when verified, what is their effective forms; (2) when these general closure laws can be reduced to simpler ones, in particular to polytropic forms and with which polytropic indexes (gamma=5/3?). This last result may have consequences concerning the fluid plasma modelizations for collisionless shocks or other nonlinear configurations; a comparison with the existing theories about the closure of fluid equations is briefly presented.
引用
收藏
页码:327 / 334
页数:8
相关论文
共 50 条
  • [21] ELECTRON ACCELERATION AT THE FRONT OF STRONG COLLISIONLESS SHOCK-WAVES
    VAISBERG, OL
    GALEEV, AA
    ZASTENKER, GN
    KLIMOV, SI
    NOZDRACHEV, MN
    SAGDEYEV, RZ
    SOKOLOV, AY
    SHAPIRO, VD
    ZHURNAL EKSPERIMENTALNOI I TEORETICHESKOI FIZIKI, 1983, 85 (04): : 1232 - 1243
  • [22] Simulation of a collisionless planar electrostatic shock in a proton-electron plasma with a strong initial thermal pressure change
    Dieckmann, M. E.
    Sarri, G.
    Romagnani, L.
    Kourakis, I.
    Borghesi, M.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2010, 52 (02)
  • [23] On the role of a nonscalar electron pressure in the collisionless magnetic reconnection
    Hosseinpour, M.
    Vekstein, G.
    PHYSICS OF PLASMAS, 2009, 16 (11) : 114505
  • [24] Variations of interplanetary fluctuations across the bow shock
    Wei, Fengsi
    Du, Heng
    Whang, Y.C.
    Scientia sinica. Series A. Mathematical, physical, astronomical and technical sciences, 1988, 31 (10): : 1240 - 1254
  • [25] VARIATIONS OF INTERPLANETARY FLUCTUATIONS ACROSS THE BOW SHOCK
    魏奉思
    都亨
    黄云潮
    ScienceinChina,SerA., 1988, Ser.A.1988 (10) : 1240 - 1254
  • [26] VARIATIONS OF INTERPLANETARY FLUCTUATIONS ACROSS THE BOW SHOCK
    WEI, FS
    DU, H
    WHANG, YC
    SCIENTIA SINICA SERIES A-MATHEMATICAL PHYSICAL ASTRONOMICAL & TECHNICAL SCIENCES, 1988, 31 (10): : 1240 - 1254
  • [27] VARIATIONS OF INTERPLANETARY FLUCTUATIONS ACROSS THE BOW SHOCK
    魏奉思
    都亨
    黄云潮
    Science China Mathematics, 1988, (10) : 1240 - 1254
  • [28] Collisionless Shock in a Relativistically Hot Unmagnetized Electron-Positron Plasma
    Kamiido, Kazuki
    Ohira, Yutaka
    ASTROPHYSICAL JOURNAL, 2024, 971 (01):
  • [29] MEASUREMENT OF ELECTRON TEMPERATURES PRODUCED BY COLLISIONLESS SHOCK WAVES IN A MAGNETIZED PLASMA
    PAUL, JWM
    GOLDENBA.GC
    IIYOSHI, A
    HOLMES, LS
    HARDCAST.RA
    NATURE, 1967, 216 (5113) : 363 - +
  • [30] The formation of a collisionless shock
    Bret, Antoine
    Stockem, Anne
    Fiuza, Frederico
    Perez Alvaro, Erica
    Ruyer, Charles
    Narayan, Ramesh
    Silva, Luis O.
    LASER AND PARTICLE BEAMS, 2013, 31 (03) : 487 - 491