Alfven wave propagation and ion cyclotron interactions in the expanding solar wind: One-dimensional hybrid simulations

被引:91
作者
Liewer, PC
Velli, M
Goldstein, BE
机构
[1] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
[2] Univ Florence, Dept Astron & Space Sci, I-50125 Florence, Italy
关键词
D O I
10.1029/2001JA000086
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We carry out one-dimensional hybrid simulations of Alfven waves propagating along the magnetic field in the presence of a mean radial spherically expanding plasma outflow, representing fast solar wind stream. The equations for particle ions of multiple species and fluid electrons are solved using the Expanding Box Model, a locally Cartesian representation of motion in spherical coordinates, in a frame moving with the local average wind speed. The model gives a minimally consistent description of the effects associated with such motion on particle dynamics, e.g., the flux-conserving decrease of magnetic field intensity and consequent decrease of cyclotron frequency with increasing distance from the Sun. The cyclotron frequency decreases faster than Alfven wave frequency, allowing fluctuations below the cyclotron frequency at smaller distance from the Sun to come into cyclotron resonance at greater distances. The hybrid treatment yields a fully self-consistent description of the consequent cyclotron wave-particle interaction in a multi-ion plasma. We present results for cases of monochromatic circularly polarized Alfven waves propagating radially outward and for initially well developed Alfvenic spectra with and without alpha particles. When both alpha particles and protons axe present, the alpha particles, which come into resonance first as the wind expands, are observed to be preferentially heated and accelerated. For high beta (equal to ratio of ion pressure to magnetic field pressure) the amount of alpha particles acceleration and heating is limited by the available wave power. For low beta cases the amount of heating and acceleration is limited, not by the wave power, but by the depletion of the distribution function in the resonance region by pitch-angle scattering. The implication of these results for solar wind models is discussed.
引用
收藏
页码:29261 / 29281
页数:21
相关论文
共 34 条
[1]  
[Anonymous], 1992, AM I PHYS C SERIES, DOI [DOI 10.1063/1.42861, 10.1063/1.42861]
[2]  
Birdsall C., 1985, PLASMA PHYSICS VIA C
[3]   Ion cyclotron wave dissipation in the solar corona: The summed effect of more than 2000 ion species [J].
Cranmer, SR .
ASTROPHYSICAL JOURNAL, 2000, 532 (02) :1197-1208
[4]   Spectroscopic constraints on models of ion cyclotron resonance heating in the polar solar corona and high-speed solar wind [J].
Cranmer, SR ;
Field, GB ;
Kohl, JL .
ASTROPHYSICAL JOURNAL, 1999, 518 (02) :937-947
[5]  
Czechowski A, 1998, ASTRON ASTROPHYS, V335, P303
[6]   CRITICAL WAVE SPECTRA FOR STOCHASTIC HEATING OF A MAGNETIZED PLASMA [J].
DEESKOW, P ;
ELSASSER, K ;
JESTCZEMSKI, F .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1990, 2 (07) :1551-1564
[7]   ION-CYCLOTRON HEATING AND ACCELERATION OF SOLAR-WIND MINOR IONS [J].
DUSENBERY, PB ;
HOLLWEG, JV .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1981, 86 (NA1) :153-164
[8]   Nonlinear cyclotron resonant wave-particle interaction in a nonuniform magnetic field [J].
Galinsky, VL ;
Shevchenko, VI .
PHYSICAL REVIEW LETTERS, 2000, 85 (01) :90-93
[9]   Acceleration and heating of heavy ions by circularly polarized Alfven waves [J].
Gomberoff, L ;
Gratton, FT ;
Gnavi, G .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1996, 101 (A7) :15661-15665
[10]   RESONANT ACCELERATION OF ALPHA-PARTICLES BY ION-CYCLOTRON WAVES IN THE SOLAR-WIND [J].
GOMBEROFF, L ;
ELGUETA, R .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1991, 96 (A6) :9801-9804