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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Systematic Uncertainties in Plasma Parameters Reported by the Fast Plasma Investigation on NASA's Magnetospheric Multiscale Mission
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Systematic Uncertainties in Plasma Parameters Reported by the Fast Plasma Investigation on NASA's Magnetospheric Multiscale Mission

机译:系统的不确定性在等离子体参数等离子体调查报告的快美国宇航局的磁性层的多尺度的使命

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摘要

Systematic uncertainties in the conversion of measured counts to phase space density by charged particle instrumentation result in errors in reported plasma moments (e.g., density, velocity, and temperature). Unlike previous particle instrumentation that relied on a spacecraft spin to sample all look‐directions, the Fast Plasma Investigation (FPI) suite on NASA's Magnetospheric Multiscale mission nearly simultaneously images the full sky. This configuration results in unprecedented time resolution but also introduces the possibility of spin tones in plasma moments, in particular electron bulk velocity. Here we characterize the effect of systematic linear errors of corrected FPI phase space densities on its reported plasma moments. We find that the flat‐fielding correction factors (i.e., scale factor errors) of FPI are typically accurate to within a few percent but can nonetheless result in significant spin tones in magnetospheric plasmas.
机译:系统不确定性的转换由带电测量计算相空间密度粒子仪器导致错误报道等离子时刻(如密度、速度,和温度)。仪器,依靠飞船旋转样品看起来都必经方向,快速的等离子体调查(FPI)在美国宇航局的套件磁性层的多尺度任务近同时图像完整的天空。以前所未有的时间配置的结果决议还介绍了的可能性尤其是旋转音调在等离子体的时刻,电子散装速度。系统的线性误差纠正的效果FPI相空间密度的等离子体的时刻。校正因子(例如,比例因子误差)FPI通常精确到几但还是能够导致重大百分比在磁性层的等离子体旋转音调。

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