Effects of Ion Temperature Anisotropy on Ion-scale Waves’ Generation in the Near-Sun Solar Wind: Parker Solar Probe Observations

Wen Liu, Huan-Yu Jia and Si-Ming Liu
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Abstract

The ion-scale electromagnetic waves are observed frequently within 0.3 au. Their generation and dissipation driven by wave–particle interaction are very important energy transfer processes in the weak collision corona and solar wind and may be one of the important factors driving the evolution of ion velocity distribution functions therein. In this Letter, we statistically analyze the possible effects of ion temperature anisotropy on the generation of the observed ion-scale waves within 0.3 au. The statistical results indicate that the ion-scale waves’ occurrence rate is proportional to ion temperature anisotropy. Moreover, the high occurrence rate of left-handed (LH) waves is closely related to EMIC and firehose instabilities driven by ion temperature anisotropy. However, we only find the close connection between right-handed (RH) waves’ high occurrence rate with the proton firehose instability. Besides, for LH waves in the regions with Tp⊥/Tp∥ > 1, their high occurrence rate is usually accompanied by the higher ion temperature (Tp, Tα), larger ion temperature ratio (Tα/Tp), and weaker collision effect. The RH waves are usually accompanied by a relatively lower ion temperature, smaller ion temperature ratio, and stronger collision effect than the LH waves. This Letter suggests that the ion temperature anisotropy is one of the important energy sources for generating ion-scale waves within 0.3 au.
离子温度各向异性对近太阳太阳风中离子尺度波产生的影响:帕克太阳探测器观测
离子尺度的电磁波在0.3 au范围内经常被观测到。它们在波粒相互作用下的产生和耗散是弱碰撞日冕和太阳风中非常重要的能量传递过程,可能是驱动其中离子速度分布函数演化的重要因素之一。在这篇论文中,我们统计分析了离子温度各向异性对0.3 au范围内观测到的离子尺度波产生的可能影响。统计结果表明,离子尺度波的发生率与离子温度的各向异性成正比。此外,左旋(LH)波的高发生率与离子温度各向异性驱动的EMIC和firehose不稳定性密切相关。然而,我们只发现右手(RH)波的高发生率与质子消防水带的不稳定性有密切的联系。此外,对于Tp⊥/Tp∥> 1区域的LH波,其高发生率通常伴随着较高的离子温度(Tp, Tα)、较大的离子温度比(Tα/Tp)和较弱的碰撞效应。相对于LH波,RH波通常伴随着相对较低的离子温度、较小的离子温度比和更强的碰撞效应。这封信表明,离子温度各向异性是产生0.3 au以内离子尺度波的重要能量来源之一。
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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