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Correlation between the Earth's outer radiation belt dynamics and solar wind parameters at the solar minimum according to EMP instrument data onboard the CORONAS-Photon satellite

机译:根据CORONAS-Photon卫星上的EMP仪器数据,地球外部辐射带动力学与太阳最低点处的太阳风参数之间的相关性

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The study of variations in the electron flux in the outer Earth radiation belt (ERB) and their correlations with solar processes is one of the important problems in the experiment with the Electron-M-Peska instrument onboard the CORONAS-Photon solar observatory. Data on relativistic and subrelativistic electron fluxes obtained by the Electron-M-Peska in 2009 have been used to study the outer ERB dynamics at the solar minimum. Increases in outer ERB relativistic electron fluxes, observed at an height of 550 km after weak magnetic disturbances induced by high-velocity solar wind arriving to the Earth, have been analyzed. The geomagnetic disturbances induced by the high-velocity solar wind and that resulted in electron flux variations were insignificant: there were no considerable storms and substorms during that period; however, several polar ground-based stations observed an increase in wave activity. An assumption has been made that the wave activity caused the variations in relativistic electron fluxes.
机译:在CORONAS-Photon太阳天文台上的Electron-M-Peska仪器进行的实验中,研究外地球辐射带(ERB)中的电子通量变化及其与太阳过程的相关性是重要的问题之一。由Electron-M-Peska在2009年获得的相对论和次相对论电子通量的数据已用于研究太阳最低点的外部ERB动力学。分析了由高速太阳风到达地球引起的弱磁扰动后,在550 km高度观察到的外部ERB相对论电子通量的增加。高速太阳风引起的地磁扰动并导致电子通量变化微不足道:在此期间没有大的暴风雨和亚暴风雨。但是,几个极地地面站观测到的波活动有所增加。假定波活动引起相对论电子通量的变化。

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