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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Locations of boundaries of outer and inner radiation belts as observed by Cluster and Double Star
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Locations of boundaries of outer and inner radiation belts as observed by Cluster and Double Star

机译:星团和双星观测到的内外辐射带边界的位置

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摘要

Cluster CIS ion spectrograms measured during the period of the recent solar minimum between April 2007 and June 2009, when Cluster was deep in the radiation belts with its perigee as close as L = 2, are analyzed. The analysis is complemented by Double Star TC‐1 satellite data from HIA ion spectrograms on perigee passes during the period of May 15, 2007 to September 28, 2007. We demonstrate how the background counts produced by energetic particles of the radiation belts in Cluster CIS and Double Star HIA instruments can be interpreted to obtain the locations of the boundaries of the outer and inner belts. The obtained L‐MLT distribution of boundaries reflects the general structure of the radiation belts. Closer examination of the time‐dependent L locations of the boundaries reveals several dips to lower L‐shells (from L = 6 to L = 4) in the outer boundary location. The importance of the solar wind pressure increases for the Earthward shift of the outer boundary of the outer belt is discussed. The location and thickness of the slot region are studied using the determined inner boundaries of the outer belt and the outer boundaries of the inner belt. It was found that during intervals of low activity in the solar wind parameters, the slot region widens, which is consistent with weaker inward radial diffusion, and also with weaker local acceleration that can occur only at higher L‐shells outside the plasmasphere. We conclude that boundaries of radiation belts determined from background measurements on the instruments with energy ranges that do not cover the radiation belts’ energies provide valuable additional information that is useful for radiation belts’ model development and validation.
机译:分析了2007年4月至2009年6月最近一次太阳最低峰期间测得的Cluster CIS离子谱图,当时Cluster处于辐射带深处,其近地点接近L = 2。此分析得到了2007年5月15日至2007年9月28日期间近地点通行证上HIA离子谱图上的双星TC-1卫星数据的补充。我们证明了CIS集群中辐射带高能粒子产生的背景计数可以解释和使用Double Star HIA仪器来获取外皮带和内皮带边界的位置。获得的边界L-MLT分布反映了辐射带的总体结构。仔细检查边界随时间变化的L位置,可以发现在外边界位置下L壳层(从L = 6到L = 4)有几次下降。讨论了太阳风压增加对于外带外边界向地球移位的重要性。使用确定的外部皮带的内部边界和内部皮带的外部边界研究缝隙区域的位置和厚度。研究发现,在太阳风参数低活动的时间间隔内,缝隙区域变宽,这与较弱的向内径向扩散以及较弱的局部加速度一致,后者仅在等离子层以外的较高L壳层才会发生。我们得出的结论是,根据仪器的背景测量结果确定的辐射带边界,其能量范围不覆盖辐射带的能量,这为辐射带的模型开发和验证提供了有价值的附加信息。

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