首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >How Well Can We Estimate Pedersen Conductance From the THEMIS White-Light All-Sky Cameras?
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How Well Can We Estimate Pedersen Conductance From the THEMIS White-Light All-Sky Cameras?

机译:我们估计皮德森电导能力如何忒弥斯的白光全天相机吗?

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摘要

We show that a white-light all-sky imager can estimate Pedersen conductance with an uncertainty of 3 mho or 40%. Using a series of case studies over a wide range of geomagnetic activity, we compare estimates of Pedersen conductance from the backscatter spectrum of the Poker Flat Incoherent Scatter Radar with auroral intensities. We limit this comparison to an area bounding the radar measurements and within a limited area close to (but off) imager zenith. We confirm a linear relationship between conductance and the square root of auroral intensity predicted from a simple theoretical approximation. Hence, we extend a previous empirical result found for green-line emissions to the case of white-light off-zenith emissions. The difference between the radar conductance and the best-fit relationship has a mean of -0.76 ± 4.8 mho and a relative mean difference of 21% ± 78%. The uncertainties are reducedto-0.72±3.3mhoand0%±40%byaveraging conductance over 10 min,whichweattribute to the time that auroral features take to move across the imager field being greater than the 1-min resolution of the radar data. Our results demonstrate and calibrate the use of Time History of Events and Macroscale Interactions during Substorms all-sky imagers for estimating Pedersen conductance. This technique allows the extension of estimates of Pedersen conductance from Incoherent Scatter Radars to derive continental-scale estimates on scales of ~1-10 min and ~100 km~2. It thus complements estimates from low-altitude satellites, satellite auroral imagers, and ground-based magnetometers.
机译:我们表明,一项白光全天成像仪可以估计他电导具有不确定性三姆欧或40%。在一个广泛的地磁活动,我们皮德森电导的估计进行比较扑克的后向散射光谱持平非相干散射雷达与极光强度。雷达测量和内边界有限面积接近(但)成像仪天顶。确认导之间的线性关系和极光强度的平方根从一个简单的理论预测近似。实证结果发现绿线排放白光off-zenith排放的情况。雷达电导和之间的区别平均-0.76±的最佳关系4.8姆欧和相对平均差的±21%78%。byaveraging reducedto - 0.72±3.3 mhoand0%±40%电导超过10分钟,whichweattribute极光特性的时间跨越成像仪场大于(宠物分辨率的雷达数据。演示和校准时间的使用历史和宏观尺度相互作用的事件彼得森亚暴的全天成像仪估算电导。皮德森电导的估计非相干散射雷达获得大陆范围内的估计~ 1 - 10的尺度~ 2分钟~ 100公里。从低空卫星,卫星极光成像系统和地面磁力计。

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