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One-dimensional spherical elementary current systems and their use for determining ionospheric currents from satellite measurements

机译:一维球面基本电流系统及其在卫星测量中确定电离层电流的用途

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摘要

The method of 1D spherical elementary current systems (SECS) is a new way for determining ionospheric and field-aligned currents in spherical geometry from magnetic field measurements made by a low-orbit satellite. In contrast to earlier methods, the full ionospheric current distribution, including both divergence-free and curl-free horizontal currents, as well as field-aligned currents, can be determined. Placing infinitely many 2D SECSs of identical amplitudes at a constant latitude results in two types of 1D SECSs, which are independent of longitude, and by superposition can reproduce any ionospheric and field-aligned current system with the same property. One type of the 1D SECSs is divergence-free and toroidal with a poloidal magnetic field, and the other type is curl-free and poloidal. Associated with the divergence of the curl-free type are radial currents. The magnetic field of the combined curl-free 1D SECS and field-aligned currents is toroidal and restricted to the region above the ionosphere. Ionospheric currents are determined by placing several 1D SECSs at different latitudes and choosing their amplitudes in such a way that their combined magnetic field as closely as possible fits the one measured by the satellite. The 1D SECS method has been tested using both modeled and real data from the CHAMP satellite, and found to work excellently in 1D cases.
机译:一维球面基本电流系统(SECS)方法是一种通过低轨卫星的磁场测量确定电离层和场对准电流在球形几何中的新方法。与以前的方法相比,可以确定完整的电离层电流分布,包括无散度和无卷曲水平电流以及场对准电流。在恒定的纬度上无限地放置多个相同幅度的2D SECS,会导致两种类型的1D SECS,它们与经度无关,并且通过叠加可以重现具有相同属性的任何电离层和场定向电流系统。一类一维SECS的散度是无散度的,并且具有极向磁场,并且是环形的,另一种类型的散度是无卷曲的且是极度的。径向电流与无卷曲型的发散有关。无卷曲的一维SECS和场对准电流的组合磁场是环形的,并限制在电离层以上的区域。通过在不同的纬度上放置几个1D SECS并选择它们的振幅来确定电离层电流,以使它们的组合磁场尽可能地接近卫星所测量的磁场。已经使用CHAMP卫星的建模数据和实际数据对一维SECS方法进行了测试,发现该方法在一维情况下效果很好。

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