论文标题

在2000年7月14日的地面增强事件中的磁性云和鞘

Magnetic Cloud and Sheath in the Ground-Level Enhancement Event of 2000 July 14. I. Effects on the Solar Energetic Particles

论文作者

Wu, S. -S., Qin, G.

论文摘要

地面增强功能(GLES)通常伴随着快速的星际冠状质量弹出(ICMES),这是由太阳能颗粒(SEP)的有效来源驱动的冲击。在2000年7月14日的GLE事件中,观察结果表明,非常快速且强的磁云(MC)在ICME冲击后面,并且在1 AU处观察到的质子强度时曲线在鞘和MC附近迅速下降了两步。因此,我们研究鞘和MC对通过数值求解聚焦的传输方程而被ICME冲击加速的SEP的影响。冲击被认为是具有假定粒子分布函数的SEP的移动源。鞘和MC设置为具有增强磁场的厚球形帽,并且鞘和MC中的湍流水平分别高于环境太阳风的湍流。质子强度时曲线的仿真结果与从$ \ sim $ 1到$ \ sim $ 100 meV的能量观察结果非常吻合,当鞘和MC到达地球时,将重现了两步的降低。仿真结果表明,鞘-MC结构在冲击穿过地球后约2天降低了质子强度。发现鞘贡献的大部分减小,而MC促进了第二步的形成。该模拟还提出了磁场结构中磁场和湍流的配位可以产生降低SEP强度的更强效果。

Ground-level enhancements (GLEs) generally accompany with fast interplanetary coronal mass ejections (ICMEs), the shocks driven by which are the effective source of solar energetic particles (SEPs). In the GLE event of 2000 July 14, observations show that a very fast and strong magnetic cloud (MC) is behind the ICME shock and the proton intensity-time profiles observed at 1 au had a rapid two-step decrease near the sheath and MC. Therefore, we study the effect of sheath and MC on SEPs accelerated by an ICME shock through numerically solving the focused transport equation. The shock is regarded as a moving source of SEPs with an assumed particle distribution function. The sheath and MC are set to thick spherical caps with enhanced magnetic field, and the turbulence levels in sheath and MC are set to be higher and lower than that of the ambient solar wind, respectively. The simulation results of proton intensity-time profiles agree well with the observations in energies ranging from $\sim$1 to $\sim$100 MeV, and the two-step decrease is reproduced when the sheath and MC arrived at the Earth. The simulation results show that the sheath-MC structure reduced the proton intensities for about 2 days after shock passing through the Earth. It is found that the sheath contributed most of the decrease while the MC facilitated the formation of the second step decrease. The simulation also infers that the coordination of magnetic field and turbulence in sheath-MC structure can produce a stronger effect of reducing SEP intensities.

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