首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evidence for the interplanetary electric field effect on the OI 630.0 nm airglow over low latitude
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Evidence for the interplanetary electric field effect on the OI 630.0 nm airglow over low latitude

机译:星际电场的证据影响OI 630.0 nm大气光低纬度

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On a geomagnetically disturbed and non-spread F night (12 February 2004), the OI 630.0 nm airglow intensity variations recorded from Gadanki (13.5°N, 79.2°E, dip 12.5°) reveal quasi-periodic intensity fluctuations superimposed on the large-scale temporal variation during 1945–2315 Indian Standard Time (IST, IST = Universal Time (UT) + 5.5 hours). The residual airglow intensity fluctuations (after detrending the large-scale variation) with periodicities of ~0.5 hours and ~1.0 hours, respectively, are found to vary in accordance with the F layer height variations over the dip equator as well as with the Y-component of the interplanetary electric field (IEF y ) variations calculated from the Advanced Composition Explorer (ACE) satellite data on 12 February 2004. Furthermore, these kind of periodic scale sizes in the residual airglow intensity fluctuations are not found on a geomagnetically quiet night (20 February 2004) and those intensity fluctuations do not show any correspondence with the F layer height variations over equator. Similar periodic components are also found in the temporal variations of instantaneous horizontal magnetic field (H) recorded at multiple stations over Indian subcontinent during the same interval on 12 February 2004. It is discussed that the currents responsible for the magnetic fluctuations are probably of magnetospheric origin. These observations using multiple techniques elicit the signature of the penetrating solar wind electric field in the nocturnal airglow intensity variations over low latitude during magnetically disturbed period.
机译:眼睛不安和不传播F(2004年2月12日),OI 630.0 nm大气光从Gadanki强度变化记录(13.5°N, 79.2°E,下降12.5°)揭示准周期性的强度波动叠加的1945 - 2315年期间大规模的时空变化印度标准时间(坚持,坚持=世界时(UT) + 5.5小时)。(在消除趋势波动大变异)~ 0.5小时的周期的研究~ 1.0小时,分别发现不同根据电离层高度变化在磁赤道以及行星际的电场分量从先进的计算(y)的变化12日组成Explorer (ACE)卫星数据2004年2月。剩余大气光周期规模大小强度波动是没有找到一个眼睛宁静的夜晚(2004年2月20日)和那些不显示任何强度波动通信与F层高度变化在赤道。还发现在时间的变化瞬时横向磁场(H)记录在多个站在印度次大陆在同一时间间隔12日2004年2月。负责电磁波动可能的磁性层的起源。观察使用多个技术引起的签名的渗透太阳风电在夜间大气光场强度变化在低磁纬度不安的时期。

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