Decoding the formation of hammerhead ion populations observed by Parker Solar Probe

Shaaban M. Shaaban, M. Lazar, R. A. López, P. H. Yoon, S. Poedts
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Abstract

In situ observations by the Parker Solar Probe (PSP) have revealed new properties of the proton velocity distributions, including hammerhead features that suggest non-isotropic broadening of the beams. The present work proposes a very plausible explanation for the formation of these populations through the action of a proton firehose-like instability triggered by the proton beam. The quasi-linear (QL) theory proposed here shows that the resulting right-hand (RH) waves have two consequences on the protons: (i) reduce the relative drift between the beam and the core, but above all, (ii) induce a strong perpendicular temperature anisotropy, specific to the observed hammerhead ion strahl. Moreover, the long-run QL results suggest that these hammerhead distributions are rather transitory states, still subject to relaxation mechanisms, of which instabilities like the one discussed here are very likely involved.
帕克太阳探测器观测到的锤头离子群的形成解码
帕克太阳探测器(PSP)的原位观测揭示了质子速度分布的新特性,包括表明质子束非各向同性拓宽的锤头特征。本研究为质子束引发的类似质子喷火管的不稳定性作用形成这些质子群提出了一个非常合理的解释。本文提出的准线性(QL)理论表明,由此产生的右手波(RH)对质子有两个影响:(i) 减少质子束与核心之间的相对漂移,但最重要的是,(ii) 引发强烈的垂直温度各向异性,这是观测到的锤头离子束所特有的。此外,长期 QL 结果表明,这些锤头分布是一种过渡状态,仍然受到弛豫机制的影响,而像这里讨论的这种不稳定性很可能与之有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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