近太阳太阳风中反向和向阳离子回旋波的共存:质子回旋不稳定性的激发

Chen Shi, Jinsong Zhao, Si Liu, Fuliang Xiao, Yifan Wu, Trevor A. Bowen, Roberto Livi and S. D. Bale
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引用次数: 0

摘要

根据帕克太阳探测器在近太阳太阳风中的观测结果,本研究确定了一个离子尺度波事件,其特点是有两个不同的频带。低频段的波呈现右旋极化,而高频段的波则呈现左旋极化。与这些波同时存在的还有质子核心和质子束成分,在测量到的质子速度分布函数(VDF)中,垂直温度高于平行温度。利用从典型质子速度分布函数中得出的等离子体参数,进行了不稳定性分析,以研究观测到的波的模式性质及其激发机制。低波段波被确定为向阳离子回旋波(ICW),由质子束回旋不稳定性产生;高波段波被确定为反向离子回旋波(ICW),由质子核回旋不稳定性诱发。这项研究首次提供了直接观测证据,证实太阳风中存在反向传播的 ICW 和质子回旋不稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coexistence of Antisunward and Sunward Ion Cyclotron Waves in the Near-Sun Solar Wind: Excitation by the Proton Cyclotron Instability
Based on observations from the Parker Solar Probe in the near-Sun solar wind, this study identifies an ion-scale wave event characterized by two distinct frequency bands. The lower-band waves exhibit right-hand polarization, while the upper-band waves have left-hand polarization. Alongside these waves, there are clear indications of the existence of both proton core and beam components, with the perpendicular temperature being higher than the parallel temperature in the measured proton velocity distribution functions (VDFs). Utilizing the plasma parameters derived from typical proton VDFs, instability analyses are conducted to investigate the mode nature of the observed waves and their excitation mechanism. The lower-band waves are identified as sunward ion cyclotron waves (ICWs), generated through the proton beam cyclotron instability; the upper-band waves are recognized as antisunward ICWs, induced by the proton core cyclotron instability. This study provides the first direct observational evidence confirming the presence of counterpropagating ICWs and proton cyclotron instability in the solar wind.
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