论文标题

帕克太阳能探针,HELIOS和风能任务观察到的Alfvénic慢太阳风的温度各向异性和氦气丰度特征

The Temperature Anisotropy and Helium Abundance Features of Alfvénic Slow Solar Wind Observed by Parker Solar Probe, Helios, and Wind Missions

论文作者

Huang, Jia, Larson, Davin E., Ervin, Tamar, Liu, Mingzhe, Ortiz, Oscar, Martinovic, Mihailo M., Huang, Zhenguang, Chasapis, Alexandros, Chu, Xiangning, Alterman, B. L., Huang, Zesen, Wei, Wenwen, Verniero, J. L., Jian, Lan K., Szabo, Adam, Romeo, Orlando, Rahmati, Ali, Livi, Roberto, Whittlesey, Phyllis, Alnussirat, Samer T., Kasper, Justin C., Stevens, Michael, Bale, Stuart D.

论文摘要

缓慢的太阳风通常被描述为低藻类,但偶尔出现高度抗体慢的太阳风(HASSW)引发了有关其源区域和进化的问题。在这项工作中,我们使用来自0.25 au的PSP的数据,0.3 au和1 au之间的HELIOS,对HASSW的温度各向异性和氦气丰度进行了统计分析,并在1 au接近1 au的情况下进行了风。 Our findings reveal that HASSW is prevalent close to the Sun, with PSP observations displaying a distinct ``U-shaped" Alfvénicity distribution with respect to increasing solar wind speed, unlike the monotonic increase trend seen in Helios and Wind data. This highlights a previously unreported population of unusually low speed HASSW, which is found in both sub-Alfvénic and super-Alfvénic regimes. The observed decreasing HASSW和快速的太阳风(FSW)之间的温度各向异性的重叠表明,HASSW的基础加热过程不同。 HASSW和FSW的径向距离降低意味着并非所有HASSW都来自与FSW同一源区域。

Slow solar wind is typically characterized as having low Alfvénicity, but the occasional occurrence of highly Alfvénic slow solar wind (HASSW) raises questions about its source regions and evolution. In this work, we conduct a statistical analysis of temperature anisotropy and helium abundance in HASSW using data from PSP within 0.25 AU, Helios between 0.3 AU and 1 AU, and Wind near 1 AU. Our findings reveal that HASSW is prevalent close to the Sun, with PSP observations displaying a distinct ``U-shaped" Alfvénicity distribution with respect to increasing solar wind speed, unlike the monotonic increase trend seen in Helios and Wind data. This highlights a previously unreported population of unusually low speed HASSW, which is found in both sub-Alfvénic and super-Alfvénic regimes. The observed decreasing overlap in temperature anisotropy between HASSW and fast solar wind (FSW) with increasing heliocentric distance suggests different underlying heating processes. Additionally, HASSW exhibits two distinct helium abundance populations, particularly evident in PSP data, with generally higher helium abundance compared to less Alfvénic slow solar wind. Moreover, the decreasing overlap in temperature anisotropy versus helium abundance distributions between HASSW and FSW with decreasing radial distance implies that not all HASSW originates from the same source region as FSW.

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