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Helium ion acceleration and heating by Alfven/cyclotron fluctuations in the solar wind

机译:太阳风中Alfven /回旋加速器波动引起的氦离子加速和加热

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摘要

The interaction between alpha particles and a given magnetic power Spectrum of Alfven/cyclotron fluctuations at propagation parallel to the background magnetic field B-o is examined in a model of a homogeneous, collisionless, magnetized plasma. Exact solutions of the linear Vlasov dispersion equation and second-order theory are used to calculate the wave-particle scattering rates for alpha/proton momentum exchange as well as for proton and alpha heating and anisotropy change. It is well established that alpha velocities are not observed to oscillate when the alpha/proton relative flow speed parallel to B-o matches the phase speed of long-wavelength Alfven waves, the "surfing" speed. Second-order theory predicts that wave-particle scattering is dominated by the relatively short wavelength, relatively low phase speed Alfven/cyclotron fluctuations which have a strong cyclotron resonance with the alphas. Thus the theory predicts that at sufficiently high proton beta the average alpha/proton speed should be observed to be substantially smaller than the surfing speed associated with long-wavelength fluctuations. [References: 40]
机译:在均质,无碰撞,磁化等离子体的模型中检查了alpha粒子与给定磁功率之间Alfven /回旋加速器波动在与背景磁场B-o平行传播时的相互作用。线性Vlasov弥散方程和二阶理论的精确解用于计算α/质子动量交换以及质子和α加热和各向异性变化的波粒散射率。公认的是,当平行于B-o的α/质子相对流速与长波长Alfven波的相速度(“冲浪”速度)匹配时,未观察到α速度振荡。二阶理论预测,波粒散射主要由相对短的波长,相对低的相速度Alfven /回旋加速器波动决定,后者与α具有强烈的回旋共振。因此,该理论预测,在足够高的质子β时,应观察到平均α/质子速度明显小于与长波长波动相关的冲浪速度。 [参考:40]

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