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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Total electron content in the Mars ionosphere: Temporal studies and dependence on solar EUV flux
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Total electron content in the Mars ionosphere: Temporal studies and dependence on solar EUV flux

机译:火星电离层中的总电子含量:时间研究和对太阳EUV通量的依赖性

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摘要

Total electron content (TEC) derived from radar signal distortions is a useful tool in probing the ionosphere of Mars. We consider 26 months of data from the subsurface mode of the Mars Express MARSIS instrument and confirm that the TEC dependence on solar zenith angle (SZA) approximately matches Chapman theory. After detrending this dependence, we find no clear trend with Martian season or dust activity but find that disturbed solar and space weather conditions can produce prolonged higher TEC values and that isolated solar energetic particle events are coincident with short-lived increases in TEC of ~10~(15) m~(-2) at all SZAs. We present the first comparison between TEC and directly measured solar EUV flux in the 30.4 nm He-II line. We find that the relationship between TEC and both He-II line irradiance and F_(10.7) solar radio flux (a long-used EUV proxy) can be expressed as power laws with exponents of 0.54 and 0.44, respectively, in approximate agreement with Chapman theory.
机译:源自雷达信号失真的总电子含量(TEC)是探测火星电离层的有用工具。我们考虑了来自Mars Express MARSIS仪器地下模式的26个月数据,并确认TEC对太阳天顶角(SZA)的依赖性大致与查普曼理论相符。在消除这种依赖性之后,我们没有发现火星季节或沙尘活动的明显趋势,但是发现受干扰的太阳和太空天气条件会产生长期更高的TEC值,而孤立的太阳高能粒子事件与〜10的TEC的短暂增加相吻合。在所有SZA处约为(15)m〜(-2)。我们提出了TEC与30.4 nm He-II线中直接测量的太阳EUV通量之间的首次比较。我们发现TEC与He-II线辐照度和F_(10.7)太阳辐射通量(长期使用的EUV代理)之间的关系可以表示为幂定律,指数分别为0.54和0.44,与Chapman近似一致理论。

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