...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Transition Between Antiparallel and Component Magnetic Reconnection at Earth’s Dayside Magnetopause
【24h】

The Transition Between Antiparallel and Component Magnetic Reconnection at Earth’s Dayside Magnetopause

机译:反平行的和组件之间的过渡在地球的磁场重联的光面磁层

获取原文
获取原文并翻译 | 示例
           

摘要

Magnetic reconnection at Earth’s magnetopause is usually described by two different scenarios, antiparallel and component reconnection. The Maximum Magnetic Shear model combines these two scenarios at specific connection points known as the Knee regions. Using a database of confirmed magnetopause reconnection locations observed during Phase 1a of the Magnetospheric Multiscale mission, a recent study showed that the model predicts the reconnection locations correctly within 2 Earth radii 80% of the time. The study also revealed and confirmed the existence of anomalies, that is, a specific set of conditions/parameters for which the observed reconnection locations are significantly different than the predicted locations. The first anomaly, described in an earlier study, occurs during the equinoxes for events with interplanetary magnetic field (IMF) clock angles around 120° and 240°. Another previously unknown anomaly was found for events observed around December that also occurs for the same IMF clock angle ranges as the first anomaly. Several of the anomalous December events were observed in the dawn sector Knee region and show that a combination of a large dipole tilt with an IMF clock angle of about 140° causes the magnetopause antiparallel reconnection region to line up along the draped IMF. That causes a deflection of the Knee points and the predicted reconnection location. These events demonstrate that magnetic reconnection at the Earth’s dayside magnetopause preferentially occurs in the antiparallel locations and only occurs along component reconnection line segments when the draped IMF field lines at the magnetopause no longer contact an antiparallel reconnection region.
机译:在地球的磁层磁场重联通常所描述的两个不同的场景,反平行的和组件重新连接。最大磁剪切模型结合了这两个在特定的连接点称为场景膝盖的地区。磁重联的位置观察到在第一阶段的磁性层的多尺度任务,最近的一项研究表明,模型预测重新连接位置正确2地球半径的80%的时间。还透露,证实了的存在异常现象,也就是说,一组特定的观察到的条件/参数重新连接位置明显不同的预测位置。发生异常,在早先的研究中,描述在春分和秋分的事件行星际磁场(IMF)时钟角度在120°和240°。发现异常事件观察周围12月也发生同样的国际货币基金组织的时钟作为第一个异常角范围。异常事件中观察到12月黎明部门膝盖地区和显示组合的偶极子与国际货币基金组织倾斜钟约140°角会导致磁层反平行的重新连接区域排队国际货币基金组织覆盖。膝盖点和预测重新连接的位置。在地球的磁力线重连的光面磁层优先发生在反平行的位置,只发生在组件IMF挂时重新连接线段电场线在磁层不再联系一个反平行的重新连接。

著录项

相似文献

  • 外文文献
  • 中文文献
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