首页> 外文期刊>Solar physics >Flux-Rope Twist in Eruptive Flares and CMEs: Due to Zipper and Main-Phase Reconnection
【24h】

Flux-Rope Twist in Eruptive Flares and CMEs: Due to Zipper and Main-Phase Reconnection

机译:爆发喇叭口和CMES的磁通绳扭曲:由于拉链和主相重新连接

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The nature of three-dimensional reconnection when a twisted flux tube erupts during an eruptive flare or coronal mass ejection is considered. The reconnection has two phases: first of all, 3D "zipper reconnection" propagates along the initial coronal arcade, parallel to the polarity inversion line (PIL); then subsequent quasi-2D "main-phase reconnection" in the low corona around a flux rope during its eruption produces coronal loops and chromospheric ribbons that propagate away from the PIL in a direction normal to it. One scenario starts with a sheared arcade: the zipper reconnection creates a twisted flux rope of roughly one turn (2p radians of twist), and then main-phase reconnection builds up the bulk of the erupting flux rope with a relatively uniform twist of a few turns. A second scenario starts with a pre-existing flux rope under the arcade. Here the zipper phase can create a core with many turns that depend on the ratio of the magnetic fluxes in the newly formed flare ribbons and the new flux rope. Main phase reconnection then adds a layer of roughly uniform twist to the twisted central core. Both phases and scenarios are modeled in a simple way that assumes the initial magnetic flux is fragmented along the PIL. The model uses conservation of magnetic helicity and flux, together with equipartition of magnetic helicity, to deduce the twist of the erupting flux rope in terms the geometry of the initial configuration. Interplanetary observations show some flux ropes have a fairly uniform twist, which could be produced when the zipper phase and any pre-existing flux rope possess small or moderate twist (up to one or two turns). Other interplanetary flux ropes have highly twisted cores (up to five turns), which could be produced when there is a pre-existing flux rope and an active zipper phase that creates substantial extra twist.
机译:考虑了在爆发眩光或冠状大量喷射期间扭转磁通管爆发时三维重新连接的性质。重新连接有两个阶段:首先,3D“拉链重新连接”沿着初始冠拱传播,平行于极性反转线(PIL);然后在其喷发过程中,在低电晕围绕焊剂绳索中的后续“主相重新连接”产生冠状环和曲线结构带,其在正常的方向上传播离Pil。一个场景从剪切拱廊开始:拉链重新连接产生一个大致一圈的扭曲助焊剂绳索(2p弧度的扭曲),然后主相重新连接构成了爆发的大部分爆发的助焊剂绳索转。第二种场景从拱廊下的预先存在的助焊剂绳索开始。在这里,拉链阶段可以创造一个具有多个转弯的核心,这取决于新形成的耀斑丝带和新的助焊绳中的磁通量的比率。然后主阶段重新连接然后将一层大致均匀扭曲到扭曲的中心核心。两个阶段和场景以简单的方式建模,这是假设初始磁通量沿着PIL碎片化。该模型使用磁螺旋和磁通的节约,以及磁螺旋的常数,以推断出初始配置的几何形状的爆发磁通绳的扭曲。截然型观察显示一些磁通绳具有相当均匀的扭曲,当拉链相和任何预先存在的助焊剂绳索具有小或中等扭曲时可以产生(直到一两个转弯)。其他行星式磁通绳索具有高度扭曲的核心(最多五个匝数),当存在预先存在的助焊剂绳索和有源拉链阶段时,可以产生,这些磁通绳和产生大量额外扭曲的有源拉链相。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号