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Distribution of ionospheric O+ ion in synchronous altitude region
Authors:Jiankui?Shi?  mailto:jkshi@center.cssar.ac.cn"   title="  jkshi@center.cssar.ac.cn"   itemprop="  email"   data-track="  click"   data-track-action="  Email author"   data-track-label="  "  >Email author,Zhenxing?Liu,Zhang?T.?L.,Jianshan?Guo,Manlian?Zhang,Sheping?Shang,Xigui?Luo
Affiliation:(1) Center for Space Science and Applied Research, Chinese Academy of Sciences, 100080 Beijing, China;(2) Space Research Institute, Austrian Academy of Sciences, A-8042 Graz, Austria
Abstract:
Based on satellite observation data, using dynamics equation, the ionospheric O+ ion’s distribution in the synchronous altitude region for different geomagnetic activity indexK p is studied by theoretical modeling and numerical analyzing, and semi-empirical models for the O+ ion’s density and flux versus longitude in the synchronous altitude region for differentK p are given. The main results show that in the synchronous altitude region: (i) The O+ ion’s density and flux in day-side are larger than those in nightside. (ii) With longitude changing, the higher the geomagnetic activity indexK p is, the higher the O+ ion’s density and flux, and their variation amplitude will be. The O+ ion’s density and flux whenK p 6 will be about ten times as great as that whenK p = 0. (iii) WhenK p = 0 orK p 6, the O+ ion’s density reaches maximum at longitudes 120° and 240° respectively, and minimum in the magnetotail. WhenK p = 3−5, the O+ ion’s density gets to maximum at longitude 0°, and minimum in the magnetotail. However, the O+ ion’s flux reaches maximum at longitude 120° and 240° respectively, and minimum in the magnetotail for anyK p value.
Keywords:ionospheric O+ ion  synchronous altitude  longitude  distribution features
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