首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Calculated densities of H3O+(H2O)n,NO2? (H2O)n, CO3? (H2O)n and electron in the nighttime ionosphere of Mars: Impact of solar wind electron and galactic cosmic rays
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Calculated densities of H3O+(H2O)n,NO2? (H2O)n, CO3? (H2O)n and electron in the nighttime ionosphere of Mars: Impact of solar wind electron and galactic cosmic rays

机译:计算密度的H3O + (H2O) n, NO2吗?二氧化碳?火星电离层:太阳风电子的影响和银河宇宙射线

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We have calculated the densities of positive ions and negative ions in the ionosphere of Mars at solar zenith angle 106° between height interval 0 km and 220 km. This model couples ion-neutral, electron neutral, dissociation of positive and negative ions, electron detachment, ion-ion, ion-electron recombination processes through 117 chemical reactions. Of the 34 ions considered in the model, the chemistry of 17 major ions (O2 +, NO+, CO2 +, H3O+H2O, H3O+(H2O)2, H3O+(H2O)3, H3O+(H2O)4, O2 +CO2, H3O+, CO4 ?, CO3 ?, CO3 ?H2O, CO3 ? (H2O)2, NO2 ?H2O, NO2 ? (H2O)2, NO3 ?H2O, and NO3 ? (H2O)2) are discussed in this paper. At altitude below 70 km, the electron density is mainly controlled by hydrated hydronium ions and water clusters of NO2 ? and CO3 ?. The ions O2 + and NO+ dominate above this altitude. This calculation suggests that the ionosphere of Mars contains F and D peaks at altitude ~130 km and ~30 km due to precipitation of solar wind electron and galactic cosmic rays respectively. F peak is mainly produced by O2 + after heavy loss of CO2 + with atomic oxygen. D peak occurs due to high efficiency of electron attachment to Ox molecules, which entails that concentration of negative ions is higher than that of electron below 30 km. These results are compared with radio measurements made by Mars 4 and Mars 5 in the nighttime ionosphere.
机译:我们已经计算了正离子的密度并在火星电离层的负离子太阳天顶角106°之间高度间隔0公里和220公里。电子中性,积极和离解负离子、电子分离、离子间,通过117年离子电子重组过程化学反应。模型,17个主要离子的化学(O2 +,H2O、CO2 +、H3O +, H3O + (H2O) 2、H3O + (H2O) 3H3O + (H2O) 4、CO2、H3O + O2 CO4, CO3, CO3 ?H2O, CO3 ?排名? ?水,纸。密度主要是由水分控制水合氢离子和水的NO2吗?二氧化碳吗?。高度。火星电离层F和D包含峰值高度~ 130公里,由于降水~ 30公里太阳风电子和银河宇宙射线分别。重大损失后的二氧化碳与原子氧+。峰值发生由于电子效率高对牛的分子,这需要负离子的浓度比电子的低于30公里。与无线电测量由火星4在夜间电离层和火星5。

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