论文标题
通过冠状质量射血冲击加速通过太阳能冠状动脉和地球层磁场加速的太阳能颗粒的基于数据驱动的物理传输模型
A data-driven physics-based transport model of solar energetic particles accelerated by coronal mass ejection shocks propagating through the solar coronal and heliospheric magnetic fields
论文作者
论文摘要
为了开发用于预测太阳能颗粒(SEP)的辐射危害的计算工具,我们创建了一个基于数据驱动的物理粒子传输模型,以计算冠状质量弹射(CME)的注入,加速和繁殖SEP,从而通过Solar Corona和Interplanetary磁场进行遍历。该模型以电晕和地球等离子体的输入以及来自MHD模型的磁场配置的输入,该模型由太阳光球磁场测量驱动的MHD模型,该测量值与观察到的CME减震器从Coronagraph图像确定。使用涉及随机模拟和集成的几种先进的计算技术,它严格求解了相关的5维聚焦传输方程,包括俯仰角散射,跨磁场线的扩散以及CME冲击的粒子加速。我们将模型应用于2011年11月3日CME活动。该计算结果可很好地重现多飞船的SEP观测值,而没有粒子通量的归一化。这次绕地球上的Sep围绕SEP事件在地球上,立体声A和立体声B处的纵向广泛分开,可以通过以中等速度的单个CME冲击来解释。
In an effort to develop computational tools for predicting radiation hazards from solar energetic particles (SEPs), we have created a data-driven physics-based particle transport model to calculate the injection, acceleration and propagation of SEPs from coronal mass ejection (CME) shocks traversing through the solar corona and interplanetary magnetic fields. The model runs on an input of corona and heliospheric plasma and magnetic field configuration from an MHD model driven by solar photospheric magnetic field measurements superposed with observed CME shocks determined from coronagraph images. Using several advanced computation techniques involving stochastic simulation and integration, it rigorously solves the time-dependent 5-dimensional focus transport equation in the phase space that includes pitch-angle scattering, diffusion across magnetic field line, and particle acceleration by CME shocks. We apply the model to the 2011 November 3 CME event. The calculation results reproduce multi-spacecraft SEP observations reasonably well without normalization of particle flux. This circumsolar SEP event seen by spacecraft at Earth, STEREO-A and STEREO-B at widely separated longitudes can be explained by diffusive shock acceleration by a single CME shock with a moderate speed.