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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Analysis of the ground level enhancement on 17 May 2012 using data fromthe global neutron monitor network
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Analysis of the ground level enhancement on 17 May 2012 using data fromthe global neutron monitor network

机译:5月17日分析地面增强使用数据从2012年全球中子监测器网络

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摘要

We have analyzed the data of the world neutron monitor network for the first ground level enhancement of solar cycle 24, the ground level enhancement (GLE) on 17 May 2012. A newly computed neutron monitor yield function and an inverse method are applied to estimate the energy spectrum, anisotropy axis direction, and pitch angle distribution of the high-energy solar particles in interplanetary space. The method includes the determination of the asymptotic viewing cones of neutron monitor stations through computations of trajectories of cosmic rays in a model magnetosphere. The cosmic ray particle trajectories are determined with the GEANT-based MAGNETOCOSMICS code using Tsyganenko 1989 and International Geomagnetic Reference Field models. Subsequent calculation of the neutron monitor responses with the model function is carried out, that represents an initial guess of the inverse problem. Derivation of the solar energetic particle characteristics is fulfilled by fitting the data of the global neutron monitor network using the Levenberg-Marquardt method over the nine-dimensional parameter space. The pitch angle distribution and rigidity spectrum of high-energy protons are obtained as function of time in the course of the GLE. The angular distribution appears quite complicated. It comprises a focused beam along the interplanetary magnetic field line from the Sun and a loss-cone feature around the opposite direction, possibly indicative of the particle transport in interplanetary magnetic field structures associated with previous coronal mass ejections.
机译:我们有世界的中子分析数据第一地面监测网络太阳活动周期24日增强地面水平2012年5月17日增强(GLE)。计算中子监控屈服函数和一个逆方法应用于估计的能量谱,各向异性轴方向,音高高能太阳的角分布粒子在星际空间。包括渐近的决心查看锥中子监测器站的宇宙射线轨迹的计算磁气圈模型。与GEANT-based轨迹确定使用Tsyganenko MAGNETOCOSMICS代码1989国际参考地磁场模型。后续计算中子监测器反应与模型函数,代表一个初始猜测的逆问题。粒子特征被装配完成全球中子监测的数据网络在使用Levenberg-Marquardt方法nine-dimensional参数空间。高能的光谱分布和刚度质子作为时间的函数课程中。似乎很复杂。梁沿行星际磁场线从太阳和损失锥特性相反的方向,可能指示性的在星际磁性粒子运输场结构与以前的日冕大规模抛射。

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