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Interpretation of ionograms in the vicinity of the dayside auroral oval by ray tracing

机译:射线追踪法解释白天极光椭圆形附近的电离图

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摘要

A ray-tracing program based on the Haselgrove equations and the Appleton-Hartree formula has been developed and used to synthesize sweep-frequency ionograms. We have looked at ionograms taken in summer periods at high-latitude ionosonde stations in the vicinity of the dayside auroral oval. Especially the traces on ionograms from oblique reflections from an electron density enhancement have been studied. The enhanced ionization is simulated either by a two-dimensional Gaussian distribution or by a double exponential function similar to the bottom part of a Chapman function. The enhancements are aligned with the earth's magnetic field direction. Ray paths in the magnetic meridian plane are calculated and discussed in connection with computed ionograms and observed ionograms from Canada and Greenland. The ray-tracing exercise was done in order to estimate characteristics of the electron density enhancement from observed ionograms. By varying the parameters in the models of the ionosphere to obtain agreement between observed and synthesized ionograms we have been able to analyze temporal and spatial progress of an electron density enhancement that could be a feature of the auroral oval like the field-aligned current sheets in the cusp region.
机译:已经开发了基于Haselgrove方程和Appleton-Hartree公式的光线跟踪程序,并将其用于合成扫频电离图。我们查看了夏季在白天极光椭圆形附近的高纬度离子探空仪站拍摄的电离图。特别地,已经研究了来自电子密度增强的倾斜反射的离子图上的迹线。通过二维高斯分布或类似于查普曼函数底部的双指数函数来模拟增强的电离。这些增强与地球磁场方向一致。经计算的电离图和来自加拿大和格陵兰的观测到的电离图,计算并讨论了磁子午面中的射线路径。进行射线追踪练习是为了从观察到的电离图估计电子密度的增强特性。通过改变电离层模型中的参数以获得观察到的和合成的电离图之间的一致性,我们已经能够分析电子密度增强的时间和空间进展,电子密度增强可能是极光椭圆的一个特征,例如场对准的电流表。尖区。

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