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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Reevaluating the relationship between the Martian ionospheric peak density and the solar radiation
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Reevaluating the relationship between the Martian ionospheric peak density and the solar radiation

机译:重新评估火星之间的关系电离层峰值密度和太阳辐射

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Several sets of the electron density profiles measured by the radio occultation experiment on board Mars Global Surveyor have been analyzed to investigate the dependence of the peak electron density of the Martian ionosphere on the solar zenith angle (SZA), neutral gas scale height (Hn), and E 10.7, which was used as a proxy of the solar EUV radiation. Corrections have been made for the E 10.7 index at the Earth orbit to obtain the E 10.7 index at the Mars orbit (denoted as E*10.7). The relationship between the peak electron density (n peak )(in northern hemisphere) of the Martian ionosphere and the E*10.7, SZA and Hn is that ξ = ln()/ln[] ≈ 0.44, slightly departing from 0.5, the value for an ideal Chapman layer. For the data set measured in the strong crustal magnetic field region (southern hemisphere), ξ is higher than that in the nonmagnetic field region (northern hemisphere), which could be caused by the higher electron temperature in the strong magnetic field.
机译:几套电子密度的概要文件由无线电掩星实验测量火星环球探测者号板进行了分析调查峰电子的依赖火星电离层密度太阳能天顶角(SZA),中性天然气规模高度10.7 (Hn), E,这是作为一个代理太阳EUV辐射。了10.7 E指数在地球轨道获得10.7 E指数在火星轨道(表示为E * 10.7)。峰电子密度峰值(n)(北部火星电离层和半球)E * 10.7, SZA和Hnξ= ln () / ln ()≈0.44、稍微偏离0.5的值一个理想的查普曼层。强烈的地壳磁场区域(南半球),ξ高于非磁性领域区域(北部半球),这可能是造成的高电子温度的强磁字段。

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