Evidence for a Link between Turbulence and the Generation of Ion Cyclotron Waves via the Helicity Barrier Effect in the Solar Wind

Utsav Panchal, Robert T. Wicks and Julia E. Stawarz
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Abstract

The dissipation and heating of collisionless plasma in the inner heliosphere is a significant unresolved problem in space physics. The helicity barrier theory suggests a possible mechanism for these processes, but it requires validation through analysis of spacecraft data. We assess the validity of the parameter regime associated with the helicity barrier in the solar wind over a range of heliocentric distances using Parker Solar Probe and Solar Orbiter. We use the Politano–Pouquet law to estimate the energy and cross helicity cascade rates in the solar wind and compare the values to radial distance, the polarization, and prevalence of ion cyclotron waves. We find that the amplitude and prevalence of left-hand-polarized waves in the solar wind is directly correlated with the total energy and the cross-helicity cascade rate of the turbulence. Our measurements are consistent with the helicity barrier being active in all solar wind intervals that we study, and we demonstrate the uncertainty in calculating energy and the cross-helicity cascade rates in this study.
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湍流与通过太阳风中的螺旋势垒效应产生离子回旋波之间联系的证据
内日球层中无碰撞等离子体的耗散和加热是空间物理学中一个重要的未解决问题。螺旋势垒理论为这些过程提供了一种可能的机制,但它需要通过对航天器数据的分析来验证。我们利用帕克太阳探测器和太阳轨道器在一定的日心距离范围内评估了太阳风中螺旋势垒相关参数体系的有效性。我们利用波利塔诺-普奎特定律估计了太阳风中的能量和交叉螺旋级联速率,并将其与径向距离、极化和离子回旋波的流行率进行了比较。我们发现太阳风中左偏振波的振幅和流行率与湍流的总能量和交叉螺旋级联率直接相关。我们的测量结果与我们所研究的所有太阳风间隔中螺旋势垒的活跃一致,并且我们在本研究中证明了计算能量和交叉螺旋级联率的不确定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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