首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Helios Observations of Quasiperiodic Density Structures in the Slow Solar Wind at 0.3, 0.4, and 0.6 AU
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Helios Observations of Quasiperiodic Density Structures in the Slow Solar Wind at 0.3, 0.4, and 0.6 AU

机译:赫利俄斯的观察准周期的密度结构在缓慢的太阳风为0.3,0.4,and 0.6的

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Following previous investigations of quasiperiodic plasma density structures in the solar wind at 1 AU, we show using the Helios1 and Helios2 data their first identification in situ in the inner heliosphere at 0.3, 0.4, and 0.6 AU. We present five events of quasiperiodic density structures with time scales ranging from a few minutes to a couple of hours in slow solar wind streams. Where possible, we locate the solar source region of these events using photospheric field maps from the Mount Wilson Observatory as input for the Wang-Sheeley-Arge model. The detailed study of the plasma properties of these structures is fundamental to understanding the physical processes occurring at the origin of the release of solar wind plasma. Temperature changes associated with the density structures are consistent with these periodic structures developing in the solar atmosphere as the solar wind is formed. One event contains a flux rope, suggesting that the solar wind was formed as magnetic reconnection opened up a previously closed flux tube at the Sun. This study highlights the types of structures that Parker Solar Probe and the upcoming Solar Orbiter mission will observe, and the types of data analyses these missions will enable. The data from these spacecrafts will provide additional in situ measurements of the solar wind properties in the inner heliosphere allowing, together with the information of the other interplanetary probes, a more comprehensive study of solar wind formation.
机译:以前的准周期的调查在太阳风等离子体密度结构1盟,我们使用Helios1和Helios2数据显示他们的第一个内部原位识别日球层为0.3,0.4和0.6天文单位。准周期的密度结构的5个事件时间尺度从几分钟到几个小时在缓慢的太阳风流。可能,我们定位太阳能的来源地区这些事件使用photospheric字段映射威尔逊山天文台作为输入的Wang-Sheeley-Arge模型。这些结构的等离子体特性理解物理的基础过程发生的起源的太阳风等离子体。与密度结构有关与这些周期结构一致发展太阳能太阳大气风形成的。这表明太阳风成立打开了一个磁场重联通量管收于太阳。突出了帕克的结构类型太阳探测器和即将到来的太阳轨道任务会观察,数据的类型分析将使这些任务。从这些航天器将提供额外的原位测量太阳风属性内日球层允许,一起信息的其他行星际探测器更全面的研究太阳风的形成。

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