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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >On the spatial distribution of decameter-scale subauroral ionospheric irregularities observed by SuperDARN radars
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On the spatial distribution of decameter-scale subauroral ionospheric irregularities observed by SuperDARN radars

机译:decameter-scale的空间分布subauroral电离层不规则观测到SuperDARN雷达

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[1] The midlatitude Super Dual Auroral Radar Network (SuperDARN) radars regularly observe nighttime low-velocity Sub-Auroral Ionospheric Scatter (SAIS) from decameter-scale ionospheric density irregularities during quiet geomagnetic conditions. To establish the origin of the density irregularities responsible for low-velocity SAIS, it is necessary to distinguish between the effects of high frequency (HF) propagation and irregularity occurrence itself on the observed backscatter distribution. We compare range, azimuth, and elevation data from the Blackstone SuperDARN radar with modeling results from ray tracing coupled with the International Reference Ionosphere assuming a uniform irregularity distribution. The observed and modeled distributions are shown to be very similar. The spatial distribution of backscattering is consistent with the requirement that HF rays propagate nearly perpendicular to the geomagnetic field lines (aspect angle ≤1°). For the first time, the irregularities responsible for low-velocity SAIS are determined to extend between 200 and 300 km altitude, validating previous assumptions that low-velocity SAIS is an F-region phenomenon. We find that the limited spatial extent of this category of ionospheric backscatter within SuperDARN radars’ fields-of-view is a consequence of HF propagation effects and the finite vertical extent of the scattering irregularities. We conclude that the density irregularities responsible for low-velocity SAIS are widely distributed horizontally within the midlatitude ionosphere but are confined to the bottom-side F-region.
机译:[1]中间纬度超级双极光雷达网络(SuperDARN)雷达定期观察夜间低速亚极光电离层从decameter-scale电离层散射(SAIS)在安静的地磁密度违规行为条件。密度违规行为负责低速知道,有必要区分之间的影响高频(HF)传播和违规事件本身观察到的后向散射分布。范围、方位角和仰角的数据百仕通SuperDARN雷达建模结果从射线追踪加上国际参考电离层假设制服不规则分布。建模的分布非常所示相似的。反向散射与要求一致高频射线传播几乎垂直地磁场线(≤1°角方面)。第一次违规行为负责低速知道决心延长200至300公里的高度,验证之前的假设,低速知道是一个F-region现象。这一类的空间范围有限电离层内SuperDARN雷达后向散射的的视野是高频传播的结果和有限的深度的影响散射违规行为。密度违规行为负责低速知道是广泛分布的中间纬度电离层中的水平但仅限于底边F-region。

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