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The extreme solar cosmic ray particle event on 20 January 2005 and its influence on the radiation dose rate at aircraft altitude

机译:2005年1月20日发生的极端太阳宇宙射线粒子事件及其对飞机高度辐射剂量率的影响

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In January 2005 toward the end of solar activity cycle 23 the Sun was very active. Between 15 and 20 January 2005, the solar active region NOAA AR 10720 produced five powerful solar flares. In association with this major solar activity several pronounced variations in the ground-level cosmic ray intensity were observed. The fifth of these flares (X7.1) produced energetic solar cosmic rays that caused a giant increase in the count rates of the ground-based cosmic ray detectors (neutron monitors). At southern polar neutron monitor stations the increase of the count rate reached several thousand percent. From the recordings of the worldwide network of neutron monitors, we determined the characteristics of the solar particle flux near Earth. In the initial phase of the event, the solar cosmic ray flux near Earth was extremely anisotropic. The energy spectrum of the solar cosmic rays was fairly soft during the main and the decay phase. We investigated also the flux of different secondary particle species in the atmosphere and the radiation dosage at flight altitude. Our analysis shows a maximum increment of the effective dose rate due to solar cosmic rays in the south polar region around 70°S and 130°E at flight altitude of almost three orders of magnitude.
机译:在2005年1月太阳活动周期23即将结束时,太阳非常活跃。在2005年1月15日至20日之间,太阳活跃区NOAA AR 10720产生了5次强大的太阳耀斑。伴随着这种主要的太阳活动,观测到了地面宇宙射线强度的几个明显变化。这些耀斑中的五分之一(X7.1)产生了高能的太阳宇宙射线,这使地面宇宙射线探测器(中子监测器)的计数率大大增加。在南极中子监测站,计数率提高了几千个百分点。从全球中子监测仪网络的记录中,我们确定了地球附近太阳粒子通量的特征。在该事件的初始阶段,地球附近的太阳宇宙射线通量极度各向异性。太阳宇宙射线的能谱在主要阶段和衰变阶段都很软。我们还研究了大气中不同次级粒子种类的通量以及飞行高度的辐射剂量。我们的分析表明,在近三个数量级的飞行高度上,南极地区约70°S和130°E处的太阳宇宙射线引起的有效剂量率最大增加。

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