首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electron Densities in the Ionosphere of Mars: Comparison of MAVEN/ROSE and MAVEN/LPW Measurements
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Electron Densities in the Ionosphere of Mars: Comparison of MAVEN/ROSE and MAVEN/LPW Measurements

机译:火星电离层电子密度:比较MAVEN /玫瑰和MAVEN / LPW测量

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Several different instrument types have been widely used to measure the density of plasma in solar system ionospheres. However, limitations in spatial and temporal coverage have prevented efforts to directly compare electron density measured by different kinds of instrument in order to assess whether systematic errors exist in such measurements. Here, we exploit the excellent observational coverage provided at Mars by the MAVEN spacecraft to compare numerous electron density measurements from two instruments, the Radio Occultation Science Experiment (ROSE, a remote sensing investigation) and Langmuir Probe and Waves (LPW, an in situ instrument). For dusk local times, we find that systematic contrasts between ROSE and LPW electron density measurements are less than 4 × 10~3 cm~(?3). As this limit is only modestly greater than the intrinsic measurement uncertainty on ROSE electron density observations, we conclude that any systematic error present in either data set is smaller than the instrumental accuracies. Differences are larger, between 8 × 10~3 and 1.2 × 10~4 cm~(?3), at dawn local times. From the differences, ratios, and percentage difference between the ROSE and LPW densities, we postulate that electron densities are more variable in the dawn ionosphere than in the dusk ionosphere.
机译:不同的仪器类型广泛用于测量等离子体的密度太阳系电离层。在空间和时间上都覆盖了直接比较电子密度的努力通过测量不同种类的乐器为了评估是否存在系统误差在这样的测量。优秀的观察范围提供了在火星上由MAVEN探测器比较多从两个电子密度的测量科学仪器、无线电掩星实验(玫瑰,遥感调查)朗缪尔探针和波(LPW原位仪器)。系统的对比和LPW上升电子密度测量值小于4×10 ~ 3厘米~(? 3)。大于固有的测量不确定性上升电子密度观察,我们得出这样的结论:任何系统中出现的错误数据集小于仪器精度。大,在8×10 ~ 3和1.2×10 ~ 4厘米~ (? 3),在黎明时分当地时间。比率,比例差异玫瑰和LPW密度,我们假定电子密度更可变的黎明比黄昏电离层电离层。

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