...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Low-latitude ionospheric-thermospheric response to storm time electrodynamical coupling between high and low latitudes
【24h】

Low-latitude ionospheric-thermospheric response to storm time electrodynamical coupling between high and low latitudes

机译:低纬电离层对高低纬度风暴时间电动力耦合的响应

获取原文
获取原文并翻译 | 示例
           

摘要

Using multi-instrumental and multistation data, we present low-latitude ionospheric-thermospheric behavior during the geomagnetic storm of 15 May 2005. The diurnal pattern of total electron content (TEC) at a chain of equatorial to low-latitude stations shows strong positive ionospheric storm on 15 May. Latitudinal variation of TEC shows development of strong equatorial ionization anomaly (EIA) on the same day. Evidence, in terms of equatorial electrojet (EEJ) and magnetogram signatures, is presented for the prompt penetration of interplanetary electric field (IEF) as the cause of the positive ionospheric storm. Consequent to the storm time circulation resulting from the extra energy deposition via Joule heating over high latitudes, compositional changes occur in the global thermosphere. TEC enhancements on 16 May are attributed to enhancement of atomic oxygen at equatorial and low latitudes and the negative ionospheric storm on 17 May observed beyond certain low latitudes is explained in terms of enhancement of molecular species because of the storm time neutral composition changes. Strong ESF plume structures on range time intensity (RTI) map and L-band scintillation and TEC depletions in GPS measurements are observed in the longitude sectors where the local time of sudden storm commencement (SSC) falls after the post sunset hours. The ionospheric zonal electric fields are altered by the combined effects of eastward disturbance dynamo electric fields and direct prompt penetration of eastward electric fields associated with the northward turning of interplanetary magnetic field (IMF) B_z leading to subsequent development of ESF after midnight.
机译:利用多仪器和多站点数据,我们给出了2005年5月15日地磁风暴期间的低纬度电离层-热层行为。在赤道到低纬度站的链中,总电子含量(TEC)的昼夜模式显示出强烈的正电离层5月15日风暴。 TEC的纬度变化在同一天显示出强烈的赤道电离异常(EIA)的发展。根据赤道电喷(EEJ)和磁图特征,提供了证据证明迅速渗透进入行星际电场(IEF)是造成电离层风暴的原因。由于在高纬度上通过焦耳加热产生的额外能量沉积而导致的风暴时间循环,在全球热圈中发生了成分变化。 5月16日TEC的增强归因于赤道和低纬度的原子氧的增强,5月17日在某些低纬度以外观测到的负电离层风暴,是根据风暴时间中性成分的变化,以分子种类的增强来解释的。在经度扇区中观察到了经度时间强度(RTI)图上强大的ESF羽状结构以及GPS测量中的L波段闪烁和TEC损耗,在这些经度扇区中,日落之后的当地突然暴风开始时间(SSC)下降了。电离层纬向电场受东向扰动发电机电场的影响和与行星际磁场(IMF)B_z向北转向相关的东向电场的直接迅速穿透的共同作用而改变,导致午夜之后ESF的后续发展。

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