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首页> 外文期刊>Journal of geophysical research. Planets >Mars Global Surveyor radio science electron density profiles: Some anomalous features in the Martian ionosphere
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Mars Global Surveyor radio science electron density profiles: Some anomalous features in the Martian ionosphere

机译:火星环球探测器无线电科学电子密度资料:一些异常特征火星电离层

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摘要

We have analyzed some 807 Mars Global Surveyor electron density profiles that are confined to the northern high latitudes and thus are relatively free of the effects of crustal magnetic fields. These profiles have shown some anomalous features in the Martian ionosphere, and one of these is the noticeable variability in number density (N m ) and height (h m ) of the primary ionospheric peak on the same day when solar conditions and solar zenith angle have remained the same, a feature not expected from a photochemically controlled layer. We study this feature by generating longitudinal plots of N m and h m for the 807 profiles and by applying a least squares spectral fit consisting of wave number 1, 2, and 3 components to these data sets. We find some significant relationship between the two parameters, with the troughs in N m coinciding with the ridges in h m (and vice versa) on the longitudinal scale. An examination at fixed solar zenith angles shows a significant anticorrelation between the two parameters recorded over a period of about 3 months. However, theoretical considerations would support a positive correlation expected in response to changes in the EUV flux that occurred during this period. Further, we observe a large variability in electron density at 160 and 180 km, altitudes in the topside ionosphere, where photochemistry is expected to dominate. This is an additional anomalous feature. No such variability is observed in the topside ionosphere of Venus. We discuss plausible mechanisms like neutral atmosphere dynamics and solar wind interaction to explain some of the features.
机译:我们分析了一些807年火星环球探测器局限于电子密度剖面北方高纬度地区,因此相对自由的地壳的影响磁场。火星电离层异常特征,其中一个明显的变化数密度(N m)和高度(h m)主要电离层峰值相同的日子太阳能条件和太阳天顶角保持不变,不会从一个特征光化学地控制层。功能通过生成纵向块N m和h m 807概要文件和通过应用最小二乘光谱组成的波1、2和3组件这些数据集。我们发现一些重要的关系两个参数,与N m的低谷与h m(副的山脊versa)纵向规模。以固定太阳能天顶角度显示了显著的anticorrelation之间的两个参数记录的时间大约3个月。然而,理论考虑支持正相关的预期响应EUV通量的变化发生在这时期。在电子密度在160和180公里,海拔在上部电离层,光化学预计将占主导地位。异常特征。的上部电离层观测金星。讨论可能的机制(如中性的大气动力学和太阳风相互作用解释的一些特性。

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