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Ionospheric and plasmaspheric electron contents inferred from radio occultations and global ionospheric maps

机译:从无线电掩星和全球电离层图推断出的电离层和等离子层电子含量

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We introduce a methodology to extract the separate contributions of the ionosphere and the plasmasphere to the vertical total electron content, without relying on a fixed altitude to perform that separation. The method combines two previously developed and tested techniques, namely, the retrieval of electron density profiles from radio occultations using an improved Abel inversion technique and a two-component model for the topside ionosphere plus protonosphere. Taking measurements of the total electron content from global ionospheric maps and radio occultations from the Constellation Observing System for Meteorology, Ionosphere, and Climate/FORMOSAT-3 constellation, the ionospheric and plasmaspheric electron contents are calculated for a sample of observations covering 2007, a period of low solar and geomagnetic activity. The results obtained are shown to be consistent with previous studies for the last solar minimum period and with model calculations, confirming the reversal of the winter anomaly, the hemispheric asymmetry of the semiannual anomaly, and the existence in the plasmasphere of an annual anomaly in the South American sector of longitudes. The analysis of the respective fractional contributions from the ionosphere and the plasmasphere to the total electron content shows quantitatively that during the night the plasmasphere makes the largest contribution, peaking just before sunrise and during winter. On the other hand, the fractional contribution from the ionosphere reaches a maximum value around noon, which is nearly independent of season and geomagnetic latitude.
机译:我们引入一种方法,以提取电离层和等离子层对垂直总电子含量的单独贡献,而无需依赖固定高度来执行该分离。该方法结合了两种先前开发和测试的技术,即使用改进的Abel反演技术和顶电离层和质子层的两组分模型从无线电掩星中检索电子密度分布。从全球电离层地图测量总电子含量,并从星座气象学,电离层和Climate / FORMOSAT-3星座的无线电掩星系统进行测量,计算得出2007年(一个时期)的电离层和等离子层电子含量太阳和地磁活动低。结果表明,所获得的结果与先前对最短太阳周期的研究和模型计算相一致,证实了冬季异常的逆转,半年度异常的半球不对称性以及该年中等离子体异常的存在。南美经度。对电离层和等离子层各自对总电子含量的分数贡献的分析表明,在晚上,等离子层贡献最大,仅在日出前和冬季达到峰值。另一方面,电离层贡献的分数在中午左右达到最大值,这几乎与季节和地磁纬度无关。

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