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Hybrid Simulations of Wave Propagation and Ion Cyclotron Heating in the Expanding Solar Wind

机译:太阳风扩展中波传播和离子回旋加速器加热的混合模拟

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摘要

We present results from hybrid (particle ions, fluid electrons) simulations of the evolution of Alfven waves close to the ion cyclotron frequency in the solar wind, which take into account the basic properties of the background solar wind flow, i. e., the spherical expansion and the consequent decrease in magnetic field and cyclotron frequency with increasing distance from the Sun. We follow the evolution of a plasma parcel in a frame of reference moving with the solar wind using a 1D expanding box hybrid model; use of the hybrid model yields a fully self-consistent treatment of the resonant cyclotron wave-particle interaction. This model is related to a previous MAD model (Velli et al. 1992), which allows the use of a simple Cartesian geometry with periodic boundary conditions. The use of stretched expanding coordinates in directions transverse to the mean radial solar wind flow naturally introduces an anisotropic damping effect on velocity and magnetic field. We present results for the case of a single circularly polarized Alfven wave propagating radially outward. Initially, the wave is below the cyclotron frequency for both the alpha particles and protons. As the wind expands, the wave frequency (as seen in the solar wind frame) decreases more slowly than the cyclotron frequencies and the wave comes into resonance. With only protons, heating occurs as the wave frequency approaches the proton cyclotron frequency. With both alphas and protons, the alphas, which come into resonance first, are observed to be preferentially heated and accelerated.
机译:我们提出了混合(粒子离子,流体电子)模拟结果,该模拟结果模拟了太阳风中接近离子回旋频率的Alfven波的演化,其中考虑了背景太阳风的基本特性,即。例如,随着距太阳的距离增加,球形膨胀以及随之而来的磁场和回旋加速器频率减小。我们使用一维扩展盒混合模型跟踪随太阳风移动的参考帧中等离子包裹的演变;混合模型的使用产生了共振回旋加速器波粒相互作用的完全自洽的处理。该模型与以前的MAD模型(Velli等,1992)有关,该模型允许使用具有周期性边界条件的简单笛卡尔几何。在垂直于平均径向太阳风流的方向上使用拉伸扩展坐标自然会对速度和磁场产生各向异性的阻尼作用。我们给出了单个圆偏振Alfven波径向向外传播的情况的结果。最初,对于α粒子和质子,该波都低于回旋加速器频率。随着风的扩展,波的频率(如在太阳风框架中所见)的下降比回旋加速器的频率下降得更慢,并且该波开始共振。仅具有质子,当波频率接近质子回旋加速器频率时会发生加热。对于α和质子,首先进入共振的α被观察到被优先加热和加速。

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