...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Arase Observation of the Source Region of Auroral Arcs and Diffuse Auroras in the Inner Magnetosphere
【24h】

Arase Observation of the Source Region of Auroral Arcs and Diffuse Auroras in the Inner Magnetosphere

机译:Arase观察极光的源区内弧和分散的极光磁气圈

获取原文
获取原文并翻译 | 示例
           

摘要

Auroral arcs and diffuse auroras are common phenomena at high latitudes, though characteristics of their source plasma and fields have not been well understood. We report the first observation of fields and particles including their pitch-angle distributions in the source region of auroral arcs and diffuse auroras, using data from the Arase satellite at L ~ 6.0-6.5. The auroral arcs appeared and expanded both poleward and equatorward at local midnight from ~0308 UT on 11 September 2018 at Nain (magnetic latitude: 66°), Canada, during the expansion phase of a substorm, while diffuse auroras covered the whole sky after 0348 UT. The top part of auroral arcs was characterized by purple/blue emissions. Bidirectional field-aligned electrons with structured energy-time spectra were observed in the source region of auroral arcs, while source electrons became isotropic and less structured in the diffuse auroral region afterwards. We suggest that structured bidirectional electrons at energies below a few keV were caused by upward field-aligned potential differences (upward electric field along geomagnetic field) reaching high altitudes (~30,000 km) above Arase. The bidirectional electrons above a few keV were probably caused by Fermi acceleration associated with the observed field dipolarization. Strong electric-field fluctuations and earthward Poynting flux were observed at the arc crossing and are probably also caused by the field dipolarization. The ions showed time-pitch-angle dispersion caused by mirror reflection. These results indicate a clear contrast between auroral arcs and diffuse auroras in terms of source plasma and fields and generation mechanisms of auroral arcs in the inner magnetosphere.
机译:极光弧和扩散极光是常见的现象在高纬度地区等离子体源的特点和字段没有被很好理解。第一个字段和粒子的观测包括他们的螺旋角分布源区的极光弧和分散极光,使用数据从Arase卫星在L-6.5 ~ 6.0。向极和阻碍在当地午夜从2018年9月11日~ 0308 UT拿(磁纬度:66°),加拿大,期间扩张阶段的亚暴,而扩散极光0348 UT后覆盖整个天空。顶部的极光弧的特征紫色/蓝色的排放。field-aligned电子与结构energy-time光谱中观察到的来源极光弧的地区,而源电子成为各向同性和结构化的极光区域扩散。结构化的双向电子能量低于几keV是由上升造成的field-aligned潜在差异(向上电场磁场)到达高海拔地区(~ 30000公里)Arase之上。双向电子上面几个凯文可能由于费米加速有关dipolarization与观察到的字段。电场波动和向地面能流密度通量弧十字路口观察也可能是造成的dipolarization。色散引起的镜面反射。结果表明一个明确的对比极光弧和扩散极光的来源等离子体和字段和生成机制极光弧内磁气圈。

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