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Effect of Rapid Changes of Solar Wind Conditions on the Pickup Ion Velocity Distribution

机译:太阳风条件快速变化对拾取离子速度分布的影响

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摘要

We performed the first systematic analysis of pickup ion (PUI) cutoff speed variations, across compression regions and due to fast fluctuations in solar wind (SW) speed and magnetic field strength. This study is motivated by the need to remove or correct for systematic effects on the determination of the interstellar flow longitude based on the longitudinal variation of the PUI cutoff. Using 2007-2014 STEREO A PLASTIC observations, we identified SW compression regions and accumulated the contained PUI velocity distributions in a superposed epoch analysis. The shift of the cutoff in velocity, interpreted as PUI energization, varies systematically across the compression region and increases approximately linearly with the speed gradient of the compression. Additionally, the shift remains positive into the negative speed gradient at the beginning of the rarefaction region. A similar response is found when PUI distributions are sorted according to the strength of fast fluctuations in SW speed, density, and magnetic field strength. These parameters remain high in the first part of the rarefaction region, suggesting a possible PUI energization through compressive turbulence. Based on these results, we removed the strongest compression regions from the interstellar flow analysis, finding no significant change in direction or uncertainty. Thus, we have revealed the influence of adiabatic compression and compressive turbulence, increasing the PUI cutoff energy, and we have demonstrated that the determination of the interstellar inflow direction via analysis of PUI distributions is robust for a multiyear data set, even in the presence of SW interaction regions.
机译:我们对拾取离子(PUI)截止速度变化进行了第一系统分析,跨越压缩区域,并且由于太阳风(SW)速度和磁场强度的快速波动。该研究的动机是由于基于PUI截止的纵向变化,需要去除或纠正对星际流动程度的测定的系统影响。使用2007-2014立体声塑料观测,我们在叠加的时期分析中识别了SW压缩区域并累积了所含的PUI速度分布。截止速度的截止值,解释为PUI通电,在压缩区域上系统地系统地变化,并且随着压缩的速度梯度大致线性增加。另外,偏移在稀疏区域的开始处保持正速度梯度。根据SW速度,密度和磁场强度的快速波动的强度对PUI分布进行分类时,发现了类似的响应。这些参数在稀疏区域的第一部分仍然很高,这提出了通过压缩湍流的可能性增强。基于这些结果,我们从星际流动分析中取出了最强的压缩区,发现方向或不确定性没有显着变化。因此,我们揭示了绝热压缩和压缩湍流的影响,增加了普利截止能量,并且我们已经证明了通过PUI分布的分析确定间隙流入方向对于多元数据集,即使在存在的情况下也是强大的SW互动区域。

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    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Institute for Experimental and Applied Physics (IEAP) Christian-Albrechts-Universit?t zu Kiel Kiel Germany;

    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Institute for Experimental and Applied Physics (IEAP) Christian-Albrechts-Universit?t zu Kiel Kiel Germany;

    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Space Science Center and Department of Physics University of New Hampshire Durham NH USA;

    Institute for Experimental and Applied Physics (IEAP) Christian-Albrechts-Universit?t zu Kiel Kiel Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理;
  • 关键词

    first systematic analysis; ion (PUI) cutoff; fast fluctuations;

    机译:第一系统分析;离子(PUI)截止;快速波动;

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