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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Effect of solar activity on the latitudinal variation of peak emission rate of 557.7nm dayglow emission under equinox conditions
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Effect of solar activity on the latitudinal variation of peak emission rate of 557.7nm dayglow emission under equinox conditions

机译:在春分条件下太阳活动对557.7nm日光发射峰值发射率纬度变化的影响

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摘要

In the present study a comprehensive model has been developed to study the 557.7. nm dayglow emission using Solar2000 EUV flux model. This study presents the model results of diurnal variation of 557.7. nm dayglow emission under equinox conditions. The effect of varying solar activity on this emission is studied for a period of 5. years (2001-2005) at a fixed date of April 3. These date are chosen due to the fact of large variations in the solar activity during the period of 5 years. An analytical formula for peak emission rate in thermosphere (E- and F-region peaks) is obtained from the model results. This analytical formula gives the first ever latitudinal variation of peak emission rate under equinox conditions. The earlier analytical formula obtained by Zhang and Shepherd (2005) from WINDII observations only provides the variation of peak emission rate as a function of solar zenith angle and F10.7 solar index.
机译:在本研究中,已开发出一种综合模型来研究557.7。使用Solar2000 EUV通量模型得出的纳米级日光发射。这项研究提出了557.7日变化的模型结果。在春分条件下的纳米白光发射。在5月(2001-2005年)的固定日期4月3日研究了太阳活动变化对排放的影响。之所以选择这些日期,是因为在此期间太阳活动存在很大差异。 5年。从模型结果中获得了热层中峰值发射速率的解析公式(E和F区域的峰值)。该分析公式给出了春分条件下峰值发射率的首次横向变化。 Zhang和Shepherd(2005)从WINDII观测中获得的较早的解析公式仅提供了峰值发射速率随太阳天顶角和F10.7太阳指数的变化。

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