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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Application and validation of the spherical elementary currents systems technique for deriving ionospheric equivalent currents with the North American and Greenland ground magnetometer arrays
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Application and validation of the spherical elementary currents systems technique for deriving ionospheric equivalent currents with the North American and Greenland ground magnetometer arrays

机译:球形基本电流系统技术在北美和格陵兰地面磁力计阵列推导电离层等效电流中的应用和验证

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摘要

With data from the Canadian Magnetic Observatory System, Canadian Array for Real time Investigations of Magnetic Activity, Geophysical Institute Magnetometer Array, Greenland, Time History of Events and Macroscale Interactions during Substorms (THEMIS), and Magnetometer Array for Cusp and Cleft Studies ground magnetometer arrays, we applied the state-of-art technique on the basis of spherical elementary currents systems (SECS) developed by Amm and Viljanen (1999) in order to calculate maps of ionospheric equivalent currents over the whole North American auroral region. This study is the first to apply the SECS technique to a large nonrectangular area with widely separated ground magnetometers (~350 km). For this study we will first demonstrate the validity of the technique using synthetic data and then examine equivalent ionospheric currents associated with a Harang discontinuity for a case study on 10 December 2007. The results show in detail the dynamic evolution of the currents over the entire North American ground magnetometer network. Equivalent ionospheric current (EIC) maps inferred at the minimum resolution of the database, in this case 10 s, can thus be analyzed further in conjunction with near-simultaneous images of the THEMIS all-sky imager mosaics and Super Dual Auroral Radar Network radar data. The EIC maps represent a value-added product from the raw magnetometer database and can be used for contextual interpretation as well as help with our understanding of magnetosphere-ionosphere coupling mechanisms using the ground arrays and the THEMIS spacecraft data.
机译:利用来自加拿大天文台系统的数据,用于磁活动实时调查的加拿大阵列,地球物理研究所的磁强计阵列,格陵兰岛,亚暴期间事件和宏观尺度相互作用的时间历史以及用于尖锐和裂缝研究的磁强计阵列地面磁强计阵列,我们在Amm和Viljanen(1999)开发的球形基本电流系统(SECS)的基础上应用了最新技术,以便计算整个北美极光区域的电离层等效电流图。这项研究是第一个将SECS技术应用于大矩形区域且地面磁力计(〜350 km)相距很远的研究。在本研究中,我们将首先使用合成数据证明该技术的有效性,然后在2007年12月10日进行案例研究,研究与哈朗不连续性相关的等效电离层电流。结果详细显示了整个北半球电流的动态演变美国地面磁力计网络。因此,可以结合数据库的最小分辨率(在这种情况下为10 s)推断出的等效电离层电流(EIC)映射,结合THEMIS全天空成像器镶嵌图的近同时图像和超双极光雷达网络雷达数据。 EIC地图代表了原始磁力计数据库的增值产品,可用于上下文解释,也有助于我们理解使用地面阵列和THEMIS航天器数据的磁层-电离层耦合机制。

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