首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Seasonal, Solar Zenith Angle, and Solar Flux Variations of O~+ in the Topside Ionosphere of Mars
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Seasonal, Solar Zenith Angle, and Solar Flux Variations of O~+ in the Topside Ionosphere of Mars

机译:季节性、太阳天顶角和太阳能通量O ~ +上部电离层的变化3

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Using observations from Mars Atmosphere and Volatile EvolutioN's Neutral Gas and Ion Mass Spectrometer, we characterize the seasonal, solar zenith angle (SZA), and solar flux dependent variations of the O~+ peak and the O~+/O_2~+ ratio in the topside ionosphere of Mars.We find that the O~+ peak is between 220 and 300 km and forms at a roughly constant neutral atmospheric pressure level of 10(-8.7±0.4) Pa. The O~+ peak altitude also decreases with increasing SZA near the terminator and varies sinusoidally with an amplitude of 26 km over a period of one Mars year in response to the changing solar insolation. The O~+ peak altitude reaches a maximum near Northern Winter solstice and Mars perihelion. The O~+ peak density on the dayside has an average value of (1.1 ± 0.5) × 10~3 cm~(-3), has no dependence on SZA for SZAs up to ~90°, and is mainly controlled by the thermospheric O/CO_2 ratio as predicted by photochemical theory. Above the O~+ peak, the O~+/O_2~+ ratio in the dayside ionosphere approaches a constant value of 1.1 ± 0.6, decreases with increasing SZA, and is highly variable on timescales of days or less.We discuss why the O~+ peak is different than the main (M2) peak at Mars and why it is similar to the F2 peak at Earth.
机译:使用从火星大气和观察挥发性进化的中性的气体和离子质量谱仪,我们描述的季节性、太阳能天顶角(SZA)和太阳能通量的依赖变化的O ~ +峰和O ~ + /成分~ +比上部电离层的火星。O ~ + 220至300公里,达到顶峰形式以大概相同的中性大气压力水平的10(-8.7±0.4)。也能减少患高度增加SZA近了《终结者》和呈现正弦变化振幅在一段时间内一个火星年26公里在应对变化的太阳日晒。O ~ +峰海拔北部附近达到最大值冬至和火星近日点。密度的光面的平均值(1.1±0.5)×10 ~ 3厘米~(3),没有依赖为SZAs SZA ~ 90°,主要是控制由thermospheric O /二氧化碳比例所预测的光化学理论。O ~ + /成分~ +比值的光面电离层趋于一个常数的值1.1±0.6,随增加SZA和高度变量在时间尺度的天或更少。为什么O ~ +峰值比主要不同(M2)峰在火星和为什么它类似于F2高峰在地球上。

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