首页> 外文OA文献 >Erupting Filaments with Large Enclosing Flux Tubes as Sources of High-mass Three-part CMEs, and Erupting Filaments in the Absence of Enclosing Flux Tubes as Sources of Low-mass Unstructured CMEs
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Erupting Filaments with Large Enclosing Flux Tubes as Sources of High-mass Three-part CMEs, and Erupting Filaments in the Absence of Enclosing Flux Tubes as Sources of Low-mass Unstructured CMEs

机译:高质量的三部分CME的源以大的封闭通量管的喷出丝,而低质量的非结构化CME的源为不存在封闭的通量管的喷出丝。

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摘要

The 3-part appearance of many coronal mass ejections (CMEs) arising from erupting filaments emerges from a large magnetic flux tube structure, consistent with the form of the erupting filament system. Other CMEs arising from erupting filaments lack a clear 3-part structure and reasons for this have not been researched in detail. This paper aims to further establish the link between CME structure and the structure of the erupting filament system and to investigate whether CMEs which lack a 3-part structure have different eruption characteristics. A survey is made of 221 near-limb filament eruptions observed from 2013 May 03 to 2014 June 30 by Extreme UltraViolet (EUV) imagers and coronagraphs. Ninety-two filament eruptions are associated with 3-part structured CMEs, 41 eruptions are associated with unstructured CMEs. The remaining 88 are categorized as failed eruptions. For 34% of the 3-part CMEs, processing applied to EUV images reveals the erupting front edge is a pre-existing loop structure surrounding the filament, which subsequently erupts with the filament to form the leading bright front edge of the CME. This connection is confirmed by a flux-rope density model. Furthermore, the unstructured CMEs have a narrower distribution of mass compared to structured CMEs, with total mass comparable to the mass of 3-part CME cores. This study supports the interpretation of 3-part CME leading fronts as the outer boundaries of a large pre-existing flux tube. Unstructured (non 3-part) CMEs are a different family to structured CMEs, arising from the eruption of filaments which are compact flux tubes in the absence of a large system of enclosing closed field.
机译:由喷发细丝引起的许多日冕物质抛射(CME)的三部分外观是由大的磁通管结构形成的,与喷发细丝系统的形式一致。其他由细丝爆发引起的CME缺乏清晰的三部分结构,对此的原因尚未详细研究。本文旨在进一步建立CME结构与喷发长丝系统结构之间的联系,并研究缺乏三部分结构的CME是否具有不同的喷发特征。从2013年5月3日至2014年6月30日,Extreme UltraViolet(EUV)成像仪和日冕仪观察到221次近肢长丝喷发。九十二个细丝喷发与三部分结构化的CME相关,41次喷发与非结构化CME相关。其余的88个被归类为爆发失败。对于34%的三部分CME,应用于EUV图像的处理表明,喷出的前边缘是围绕灯丝的预先存在的环形结构,随后随灯丝一起喷出,形成了CME的前导明亮前边缘。磁通密度模型证实了这种连接。此外,与结构化CME相比,非结构化CME的质量分布更窄,总质量与三部分CME芯的质量相当。这项研究支持将三部分CME前沿定义为大型现有焊剂管的外边界。非结构化(非三部分)CME与结构化CME是不同的家族,这是由于在没有大型封闭磁场的情况下,紧凑型通量管的细丝喷发而引起的。

著录项

  • 作者

    Hutton Joe; Morgan Huw;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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