论文标题

直接首先观察2020年11月两次连续星际冠状动脉质量弹出的相互作用

Direct First PSP Observation of the Interaction of Two Successive Interplanetary Coronal Mass Ejections in November 2020

论文作者

Nieves-Chinchilla, Teresa, Alzate, Nathalia, Cremades, Hebe, Rodriguez-Garcia, Laura, Santos, Luiz F. G. Dos, Narock, Ayris, Xie, Hong, Krupar, Adam Szabo Vratislav, Pulupa, Marc, Lario, David, Stevens, Michael L., Palmerio, Erika, Wilson III, Lynn B., Kwon, Katharine K. Reeves Ryun-Young, Mays, M. Leila, Cyr, O. Chris St., Hess, Phillip, Seaton, Daniel B., Niembro, Tatiana, Bale, Stuart D., Kasper, Justin C.

论文摘要

我们研究了进化过程在11月29日至12月1日在帕克太阳能探针(PSP)之间原位检测到的两个星际冠状质量弹出(ICME)的内部磁结构的影响。在EUV的太阳上远程观察到ICMES的来源,然后在白光下追踪到其冠状动脉对应物。这个时期特别引起了社区的关注,因为它已被确定为太阳周期的第一个广泛的太阳能颗粒事件。25。在这些大规模磁性结构的PSP观察过程中,各种太阳能和地球层销售的航天器的分布使这些大规模磁性结构在PSP观察过程中可以全面地分析此类结构的内部进化和拓扑。通过组装不同的模型和技术,我们确定了两个连续ICMES之间相互作用的签名以及对其内部结构的影响。我们将多丙烯酸酯观察结果与遥远的前向建模技术,数值传播模型和原位重建技术结合使用。从完整的对帐中,结果表明,两个CME在PSP附近相互作用。因此,我们根据与两个CME的相互作用和碰撞相关的物理过程确定原位观察结果。我们还扩展了通量绳索建模和原位重建技术,以将衰老和膨胀效应纳入扭曲的内部磁性结构中,并探索这两种效应在ICMES的磁构型中的含义。

We investigate the effects of the evolutionary processes in the internal magnetic structure of two interplanetary coronal mass ejections (ICMEs) detected in situ between 2020 November 29 and December 1 by Parker Solar Probe (PSP). The sources of the ICMEs were observed remotely at the Sun in EUV and subsequently tracked to their coronal counterparts in white light. This period is of particular interest to the community since it has been identified as the first widespread solar energetic particle event of Solar Cycle 25. The distribution of various solar and heliospheric-dedicated spacecraft throughout the inner heliosphere during PSP observations of these large-scale magnetic structures enables a comprehensive analysis of the internal evolution and topology of such structures. By assembling different models and techniques, we identify the signatures of interaction between the two consecutive ICMEs and the implications for their internal structure. We use multispacecraft observations in combination with a remote-sensing forward modeling technique, numerical propagation models, and in-situ reconstruction techniques. The outcome, from the full reconciliations, demonstrates that the two CMEs are interacting in the vicinity of PSP. Thus, we identify the in-situ observations based on the physical processes that are associated with the interaction and collision of both CMEs. We also expand the flux rope modeling and in-situ reconstruction technique to incorporate the aging and expansion effects in a distorted internal magnetic structure and explore the implications of both effects in the magnetic configuration of the ICMEs.

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