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首页> 外文期刊>The Astrophysical journal >SHORT-WAVELENGTH ELECTROSTATIC FLUCTUATIONS IN THE SOLAR WIND
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SHORT-WAVELENGTH ELECTROSTATIC FLUCTUATIONS IN THE SOLAR WIND

机译:风中的短波静电起伏

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Hybrid Vlasov-Maxwell simulations have been used recently to investigate the dynamics of the solar-wind plasma in the tail at short wavelengths of the energy cascade. These simulations have shown that a significant level of electrostatic activity is detected at wavelengths smaller than the proton inertial scale in the longitudinal direction with respect to the ambient magnetic field. In this paper, we describe the results of a new series of hybrid Vlasov-Maxwell simulations that allow us to investigate in more detail the generation process of these electrostatic fluctuations in terms of the electron-to-proton temperature ratio Te /Tp . This analysis gives evidence for the first time that even in the case of cold electrons, Te Tp (the appropriate condition for solar-wind plasmas), the resonant interaction of protons with large-scale left-hand polarized ion-cyclotron waves is responsible for the excitation of short-scale electrostatic fluctuations with an acoustic dispersion relation. Moreover, through our numerical results we propose a physical mechanism to explain the generation of longitudinal proton-beam distributions in typical conditions of the solar-wind environment.
机译:混合Vlasov-Maxwell模拟最近已用于研究能量级联的短波长尾部太阳风等离子体的动力学。这些模拟表明,相对于周围磁场,在小于纵向上质子惯性尺度的波长处检测到显着水平的静电活性。在本文中,我们描述了一系列新的混合Vlasov-Maxwell模拟结果,这些模拟结果使我们可以根据电子与质子温度比Te / Tp更详细地研究这些静电涨落的产生过程。这项分析首次证明,即使在冷电子Te Tp(太阳风等离子体的适当条件)的情况下,质子与大规模左旋极化离子回旋加速器波的共振相互作用也是造成这种情况的原因。具有声色散关系的短尺度静电涨落的激发。此外,通过我们的数值结果,我们提出了一种物理机制来解释在太阳风环境的典型条件下纵向质子束分布的产生。

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