首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Local-time-dependent low-altitude ion spectra deduced from TWINS ENA images
【24h】

Local-time-dependent low-altitude ion spectra deduced from TWINS ENA images

机译:Local-time-dependent低空离子光谱推导出从双胞胎ENA图像

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, we analyze Two Wide-angle Imaging Neutral-atom Spectrometers (TWINS) stereo observations of energetic neutral atoms (ENAs) produced from the low altitude emission (LAE) region during the interval 1130-1146 UT on 6 April 2010. Geometrical calculations determine the geophysical locations of pixels at or near the LAE limb and the associated uncertainties. For our event, the two TWINS imagers observed a broad (8.4-9.2 h wide in magnetic local time (MLT)) region of LAEs on the opposing limb, possibly containing an ion boundary near dusk. The most intense LAEs were detected in a narrow range of magnetic latitude (67°-74°) and pitch angle (112°-116°). We implement a simplified thick-target approximation (TTA) to obtain ion spectra from TWINS LAEs and perform a validation study using a conjunction of the TWINS-observed LAE crescents with a simultaneous NOAA 17 polar-orbit pass slightly west of the TWINS LAEs. Since TTA is limited to the brightest portion of LAEs, we apply our analysis for pixels with at least 30% of the peak value. TWINS ion spectra are calculated for individual pixels spanning several hours of MLT. The spectra exhibit a pronounced local time dependence. For more westward MLT (and more equatorward latitude), there is a shift toward spectra that are more energetic and peaked. This spatial dependence is consistent with ion drift theory and previous observations. The peaked LAE-derived ion spectra of 6 April 2010 are notably different than those observed during much weaker disturbances, but are consistent with LAE observations from similar activity levels. These results demonstrate that with proper caution in interpreting the results, TWINS ENA imaging resolves MLT-dependent (and to a limited extent, latitude-dependent) low-altitude ion spectral shape information, simultaneously across a broad range of MLT. This study advances previous results that considered much coarser MLT structure in LAEs and augments previous statistical spectral analysis of in situ data. Key Points TWINS low-altitude ion spectra are calculated at several hours of nightside MLT. More westward and equatorward spectra are more energetic, and peaked. ENA imaging resolves the MLT-dependence of low altitude spectral shapes.
机译:在本文中,我们分析两个广角成像中性原子光谱仪(双胞胎)立体声观察高能中性原子(ENAs)从低空排放(莱城)地区在区间1130 - 1146 UT 6日2010年4月。的地球物理位置像素达到或接近莱城肢体和相关的不确定性。对于我们的事件,两个双胞胎成像仪观察到广泛(宽8.4 - -9.2 h磁当地时间(MLT))地区反对肢体上的拉,可能包含一个离子边界附近的黄昏。最强烈的la被发现在一个狭窄的磁纬度范围(67°-74°)和沥青角(112°-116°)。厚靶近似(TTA)获得离子光谱双胞胎la和执行验证研究使用TWINS-observed的结合莱城新月同时NOAA 17极地轨道上通过稍微以西的双胞胎拉。因为TTA仅限于最亮的部分洛杉矶,我们应用在分析像素至少30%的峰值。计算出每个像素生成吗MLT的几个小时。当地时间明显依赖。西MLT(和更多的阻碍纬度),有一个转向更多的光谱精力充沛,达到顶峰。与离子漂移理论和以前一致观察。2010年4月6日相比明显不同观察到在弱干扰,但从类似莱城的观察一致活动水平。通过适当的谨慎在解释结果,双胞胎ENA成像解决MLT-dependent(和一个有限的范围内,latitude-dependent)低空离子光谱形状信息,同时在一个广泛的传输。研究进展之前考虑的结果多粗MLT结构在洛杉矶和增强之前统计的原位光谱分析数据。计算在几个小时的阴面MLT。更多的向西和朝赤道方向谱更精力充沛,达到顶峰。MLT-dependence低空光谱的形状。

著录项

相似文献

  • 外文文献
  • 中文文献
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