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Proton and He^2+ Temperature Anisotropies in the Solar Wind Driven by Ion Cyclotron Waves
引用本文:Quan-Ming Lu and Shui Wang School of Earth and Space Sciences,University of Science and Technology of China,Hefei 230026,. Proton and He^2+ Temperature Anisotropies in the Solar Wind Driven by Ion Cyclotron Waves[J]. 中国天文和天体物理学报, 2005, 5(2): 184-192
作者姓名:Quan-Ming Lu and Shui Wang School of Earth and Space Sciences  University of Science and Technology of China  Hefei 230026  
作者单位:Quan-Ming Lu and Shui Wang School of Earth and Space Sciences,University of Science and Technology of China,Hefei 230026;
基金项目:the National Natural Science Foundation of China.
摘    要:We carried out one-dimensional hybrid simulations of resonant scattering of protons and He^2 ions by ion cyclotron waves in an initially homogeneous, collisionless and magnetized plasma. The initial ion cyclotron waves have a power spectrum and propagate both outward and inward. Due to the resonant interaction with the protons and He^2 ions, the wave power will be depleted in the resonance region. Both the protons and He^2 ions can be resonantly heated in the direction perpendicular to the ambient magnetic field and leading to anisotropic velocity distributions, with the anisotropy higher for the He^2 ions than for the protons. At the same time, the anisotropies of the protons and He^2 ions are inversely correlated with the plasma β‖p=8πnpkBT‖p/B0^2, consistent with the prediction of the quasilinear theory (QLT).

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Proton and He2+ Temperature Anisotropies in the Solar Wind Driven by Ion Cyclotron Waves
Quan-MingLu ShuiWang. Proton and He2+ Temperature Anisotropies in the Solar Wind Driven by Ion Cyclotron Waves[J]. Chinese Journal of Astronomy and Astrophysics, 2005, 5(2): 184-192
Authors:Quan-MingLu ShuiWang
Affiliation:SchoolofEarthandSpaceSciences,UniversityofScienceandTechnologyofChina,Hefei230026
Abstract:
Keywords:solar wind - plasmas - waves
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