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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Critical frequencies of the ionospheric F-1 and F-2 layers during the last four solar cycles: Sunspot group type dependencies
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Critical frequencies of the ionospheric F-1 and F-2 layers during the last four solar cycles: Sunspot group type dependencies

机译:在最后四个太阳循环期间电离层F-1和F-2层的临界频率:SunSpot组类型依赖项

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The long term solar activity dependencies of ionospheric F-1 and F-2 regions' critical frequencies (f(0)F(1) and f(0)F(2)) are analyzed for the last four solar cycles (1976-2015). We show that the ionospheric F-1 and F-2 regions have different solar activity dependencies in terms of the sunspot group (SG) numbers: F-1 region critical frequency (f(0)F(1)) peaks at the same time with the small SG numbers, while the f(0)F(2) reaches its maximum at the same time with the large SG numbers, especially during the solar cycle 23. The observed differences in the sensitivity of ionospheric critical frequencies to sunspot group (SG) numbers provide a new insight into the solar activity effects on the ionosphere and space weather. While the F-1 layer is influenced by the slow solar wind, which is largely associated with small SGs, the ionospheric F-2 layer is more sensitive to Coronal Mass Ejections (CMEs) and fast solar winds, which are mainly produced by large SGs and coronal holes. The SG numbers maximize during of peak of the solar cycle and the number of coronal holes peaks during the sunspot declining phase. During solar minimum there are relatively less large SGs, hence reduced CME and flare activity. These results provide a new perspective for assessing how the different regions of the ionosphere respond to space weather effects.
机译:在最后四个太阳循环(1976-2015 )。我们表明,在太阳黑子组(SG)数字方面,电离层F-1和F-2区域具有不同的太阳能活动依赖性:F-1区域临界频率(F(0)F(1))同时峰值使用小的SG编号,而F(0)F(2)同时达到其最大值,特别是在太阳循环期间23.观察到对太阳黑子群的电离层临界频率敏感性的差异( SG)数字对对电离层和太空天气的太阳能效应提供了新的洞察力。虽然F-1层受到慢太阳风的影响,但是电离层F-2层对冠状体积(CMES)和快速太阳风更敏感,这主要由大型SGS生产和冠状孔。 SG数字最大化在太阳循环的峰值期间和太阳黑子下降期间冠状孔峰的数量。在太阳能最小期间,有相对较差的SGS,因此降低了CME和耀斑活动。这些结果提供了评估电离层的不同区域如何应对空间天气效应的新视角。

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