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Comparison of DMSP and SECS region-1 and region-2 ionospheric current boundary

机译:DMSP和SECS区域1和区域2电离层电流边界的比较

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摘要

The region-1 and region-2 boundary has traditionally been identified using data from a single spacecraft crossing the auroral region and measuring the large scale changes in the cross track magnetic field. With data from the AUTUMN, CANMOS, CARISMA, GIMA, DTU MGS, MACCS, McMAC, STEP, THEMIS, and USGS ground magnetometer arrays we applied a state-of-art technique based on spherical elementary current system (SECS) method developed by in order to calculate maps of region-1 and region-2 current system over the North American and Greenland auroral region. Spherical elementary current (SEC) amplitude (proxy for vertical currents) maps can be inferred at 10 s temporal resolution, ~1.5° geographic latitude (Glat), and 3.5° geographic longitude (Glon) spatial resolution. We compare the location of the region-1 and region-2 boundary obtained by the DMSP spacecraft with the region-1 and region-2 boundary observed in the SEC current amplitudes. We find that the boundaries typically agree within 0.2° ± 1.3°. These results indicate that the location of the region-1 and region-2 boundary can reasonably be determined from ground magnetometer data. The SECS maps represent a value-added product from the magnetometer database and can be used for contextual interpretation in conjunction with other missions as well as help with our understanding of magnetosphere-ionosphere coupling mechanisms using the ground arrays and the magnetospheric spacecraft data.
机译:传统上,使用来自穿越极光区域的单个航天器的数据并测量跨轨磁场的大规模变化来识别区域1和区域2边界。借助来自AUTUMN,CANMOS,CARISMA,GIMA,DTU MGS,MACCS,McMAC,STEP,THEMIS和USGS地面磁力计阵列的数据,我们应用了一种基于最新技术的球面基本电流系统(SECS)方法,由为了计算北美和格陵兰极光地区的1区和2区当前系统的地图。可以在10 s的时间分辨率,〜1.5°地理纬度(Glat)和3.5°地理经度(Glon)空间分辨率下推断出球形基本电流(SEC)幅度图(垂直电流的代理)图。我们将DMSP航天器获得的region-1和region-2边界的位置与在SEC电流幅度中观察到的region-1和region-2边界进行了比较。我们发现边界通常在0.2°±1.3°之内。这些结果表明,可以从地面磁力计数据合理地确定出区域1和区域2边界的位置。 SECS地图代表了磁力计数据库的增值产品,可以与其他任务一起用于上下文解释,还可以帮助我们了解使用地面阵列和磁层航天器数据的磁层-电离层耦合机制。

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    J.M. Weygand; S. Wing;

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  • 年(卷),期 -1(143-144),-1
  • 年度 -1
  • 页码 8–13
  • 总页数 16
  • 原文格式 PDF
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