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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Seasonal and latitudinal differences of the saturation effect between ionospheric NmF2 and solar activity indices
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Seasonal and latitudinal differences of the saturation effect between ionospheric NmF2 and solar activity indices

机译:季节性和纬度的差异的在电离层NmF2和饱和度的影响太阳活动指数

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摘要

The seasonal and latitudinal differences of the correlations between daytime ionospheric F2 peak electron density (NmF2) and solar activity indices in the east Asian/Australian sector have been analyzed using data from 15 ionosonde stations at different geomagnetic latitudes during 1969,s-1990. It is found that the characteristics of the correlations between NmF2 and solar activity indices have significant seasonal and latitudinal variations and hemispheric asymmetry. At middle and high latitudes, there is a clear saturation trend in NmF2 as solar activity increases in summer. However, there is no apparent saturation trend in winter, rather a tendency of nonlinear increase of NmF2 with solar activity. This nonlinear increasing effect is more pronounced in the Northern Hemisphere. In the equatorial anomaly region, the saturation effect is stronger, and the equinox has the strongest saturation effect. All seasons considered, the equatorial anomaly region has the strongest saturation effect, followed by the magnetic equatorial region. The saturation effect becomes relatively weak at middle latitudes. At higher latitudes and in the Northern Hemisphere, there is even a trend of nonlinear increase of N,,F2 with solar activity. Our results indicate that thermospheric global circulation is probably an important factor that introduces seasonal, latitudinal, and north–south differences in the correlations between NmF2 and solar activity indices.
机译:的季节和纬度的差异白天电离层F2峰之间的相关性电子密度(NmF2)和太阳活动指数在东亚/澳大利亚的部门从15 ionosonde分析使用数据站在不同的地磁纬度在1969年,s - 1990。NmF2之间相关性的特征和太阳活动指数有显著的季节性和纬度的变化半球不对称。纬度,有一个明确的饱和趋势在夏天NmF2随着太阳活动增加。然而,没有明显的饱和趋势冬天,而非线性增加的趋势与太阳活动NmF2。增加的效果更加明显北半球。地区,饱和效应强,equinox最强的饱和效应。所有季节认为,赤道异常地区最强的饱和效应,其次是磁赤道地区。饱和效应变得相对较弱中纬度地区。北半球,甚至还有的趋势非线性增加N,与太阳活动F2。我们的研究结果表明,thermospheric全球循环可能是一个重要的因素介绍了季节、纬度和南北差异NmF2和之间的相关性太阳活动指数。

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