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Estimation of solar and geomagnetic activity contribution in solar cycle variations of median peak electron density NmF2

机译:估算中值峰值电子密度NmF2在太阳周期变化中太阳和地磁活动的贡献

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Traditionally, it is believed that the solar cycle variations of the peak electron density NmF2 are primarily due to solar ultraviolet flux variations. Quantification of the solar ultraviolet effect is usually performed by building the linear regression of NmF2 values on the solar activity indices (F10.7 or Rz). The error of such linear regression may be associated with different reasons, particularly, with the influence of geomagnetic activity. To estimate the geomagnetic activity impact we use the double linear regression of NmF2 median values on the values of the solar (F10.7) and geomagnetic (Ap) activity indices. Selection of the optimum periods for averaging F10.7 and Ap indices is performed by minimizing the root mean square error of the linear regression. The double linear regression allows us to estimate: (1) taking into account the impact of geomagnetic activity on linear regression error, and (2) solar and geomagnetic activity contribution in solar cycle variations of NmF2 median values. In the paper we use the NmF2 values obtained with the ionosondes located at Irkutsk (52N, 104E) (2003-2015 data set) and Kaliningrad (54N, 20E) (2008-2016 data set).
机译:传统上,认为峰值电子密度NmF2的太阳周期变化主要是由于太阳紫外线通量变化。通常通过在太阳活动指数(F10.7或Rz)上建立NmF2值的线性回归来对太阳紫外线效应进行量化。这种线性回归的误差可能与不同的原因有关,特别是与地磁活动的影响有关。为了估算地磁活动影响,我们使用NmF2中值对太阳(F10.7)和地磁(Ap)活动指数的值进行双重线性回归。通过最小化线性回归的均方根误差来选择平均F10.7和Ap指数的最佳周期。双重线性回归使我们可以估算:(1)考虑地磁活动对线性回归误差的影响,以及(2)太阳和地磁活动对NmF2中值太阳周期变化的贡献。在本文中,我们使用从位于伊尔库茨克(52N,104E)(2003-2015数据集)和加里宁格勒(54N,20E)(2008-2016数据集)的离子探空仪获得的NmF2值。

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