论文标题
太阳风的太阳周期变化的ACE SHICS观察
ACE SWICS observations of solar cycle variations of the solar wind
论文作者
论文摘要
在目前的工作中,我们利用了ICMES外风能的ACE/SWICS原位测量值,以确定受太阳能周期影响的太阳风能以及在何种程度上。我们专注于质子温度和密度,离子温度和差异速度,电荷状态分布以及相对和绝对元素丰度。我们进行了这项工作,将风在速度箱中划分,以研究以不同速度的风如何对太阳周期的反应。在可能的情况下,我们还将这项研究重复为瑞士测量值的子集,受库仑碰撞的影响较小。我们发现,除了差异速度(我们没有足够的测量值)的唯一例外,所有风能都随着太阳周期的函数而变化。我们的结果指出了一种场景,即慢速和快速的太阳风都被波加速,但起源于不同的源(分别为快速/慢速风的开放/封闭磁性结构),它们的相对贡献沿太阳周期变化。我们还发现,一侧的加热和加速度的特征以及FIP对另一侧的效果表明,基于波浪的血浆加热,加速度和分级在整个太阳周期中保持活跃,但在所有风中降低了它们的有效性,尽管慢风比快速的风能受到了很多影响。
In the present work we utilize ACE/SWICS in-situ measurements of the properties of the solar wind outside ICMEs in order to determine whether, and to what extent are the solar wind properties affected by the solar cycle. We focus on proton temperatures and densities, ion temperatures and differential speeds, charge state distributions and both relative and absolute elemental abundances. We carry out this work dividing the wind in velocity bins to investigate how winds at different speeds react to the solar cycle. We also repeat this study, when possible, to the subset of SWICS measurements less affected by Coulomb collisions. We find that with the only exception of differential speeds (for which we do not have enough measurements) all wind properties change as a function of the solar cycle. Our results point towards a scenario where both the slow and fast solar wind are accelerated by waves, but originate from different sources (open/closed magnetic structures for the fast/slow wind, respectively) whose relative contribution changes along the solar cycle. We also find that the signatures of heating and acceleration on one side, and of the FIP effect on the other, indicate that wave-based plasma heating, acceleration and fractionation remain active throughout the solar cycle, but decrease their effectiveness in all winds, although the slow wind is much affected than the fast one.