...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Longitudinal and Interhemispheric Ionospheric Response to 2009 and 2013 SSW Events in the African-European and Indian-East Asian Sectors
【24h】

Longitudinal and Interhemispheric Ionospheric Response to 2009 and 2013 SSW Events in the African-European and Indian-East Asian Sectors

机译:纵向和两半球间的电离层应对事件的西南偏南约2009年和2013年African-European和Indian-East亚洲部门

获取原文
获取原文并翻译 | 示例
           

摘要

The ionospheric response to two sudden stratospheric warming (SSW) events that occurred during low (2009) and moderate solar activity (2013) around 10°E (±10°) African-European and 95°E (±10°) Indian-East Asian sectors is investigated. The total electron content (TEC) obtained from a meridional chain of stations in the two sectors are used to understand the interlongitudinal and interhemispheric response to these SSW events. Significant depletion of daytime TEC was observed after the onset of 2009 SSW around the equatorial ionization anomaly (EIA) crest followed by an increase during the decaying phase of SSW. The formation of an early peak in the daytime TEC and semidiurnal variation in the response of TEC in the form of morning enhancement and afternoon depletion was observed at low latitudes. The morning enhancement is prominent at northern low latitudes while afternoon depletion is more at southern low latitudes. The conspicuous TEC perturbations characterized by semidiurnal variation in mid-January of 2013 override the sudden increase in solar activity after the onset of the SSW. SSW impacted semidiurnal perturbations in F2 layer peak electron density (NmF2) and height (hmF2) noticed at Cocos Island, the southern hemisphere low latitude station. Longitudinal and interhemispheric differences in the magnitude and evolution of TEC perturbations were noticed. The longitudinal differences in SSW modulation of TEC might be attributed to the differential impact of the nonmigrating tides and differences in the geomagnetic field elements between the two sectors. The meridional wind in the mesosphere and lower thermosphere region contribute to the TEC enhancement.
机译:电离层响应两个突然平流层变暖(f)的事件发生在低(2009)和温和的太阳活动(2013)大约10°E(±10°)African-European和95°E(±10°)Indian-East亚洲部门调查。从站的子午链这两个部门是用来理解interlongitudinal和两半球间的反应这些量的事件。白天TEC观察发作后的2009年然后在赤道电离异常(EIA)峰值期间增加紧随其后量的衰减阶段。峰在白天TEC和半日变化在早上TEC的形式的反应增强和下午损耗被观察到在低纬度地区。突出在低纬度地区北部南部下午消耗更低纬度。半日变化的特征2013年1月中旬覆盖突然增加在太阳活动的量。在F2层半日扰动的影响电子密度峰值(NmF2)和高度(hmF2)注意到在科科斯岛,南半球较低的纬度站。在大小和两半球间的差异TEC扰动的演化被注意到。TEC的纵向差异量调制可能是由于微分的影响nonmigrating潮汐和差异地磁场之间的两个元素部门。和较低的热电离层地区做出贡献TEC的提高。

著录项

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