论文标题
太阳耀斑中的双冠X射线源的模型
A model of double coronal hard X-ray sources in solar flares
论文作者
论文摘要
Rhessi在太阳耀斑期间观察到了许多双冠X射线源,其中两个源位于推断的重新连接位点的不同侧。但是,这些发射X射线发射的电子在哪里以及如何加速尚不清楚。在这里,我们介绍了双冠状硬X射线(HXR)源的第一个模型,其中电子通过双向快速重新连接流出驱动的一对终止冲击加速。我们通过使用速度和磁场从宏观磁性水力动力学模拟磁通绳射击的速度和磁场来对耀斑区域中电子的加速和运输进行建模。我们表明,通过终端冲击和高能电子可以有效地加速电子,这主要集中在两种冲击周围。合成的HXR发射图像显示了两个不同的来源,该来源扩展到重新连接区域以下和更高的$ 100 kev,上面的源比下源很差。两个冠状动脉源的HXR能光谱显示出与观测值一致的相似光谱斜率。我们的仿真结果表明,在解释太阳耀斑中的双源非热排放时,耀斑终止冲击可能是一种有希望的粒子加速机制。
A number of double coronal X-ray sources have been observed during solar flares by RHESSI, where the two sources reside at different sides of the inferred reconnection site. However, where and how are these X-ray-emitting electrons accelerated remains unclear. Here we present the first model of the double coronal hard X-ray (HXR) sources, where electrons are accelerated by a pair of termination shocks driven by bi-directional fast reconnection outflows. We model the acceleration and transport of electrons in the flare region by numerically solving the Parker transport equation using velocity and magnetic fields from the macroscopic magnetohydrodynamic simulation of a flux rope eruption. We show that electrons can be efficiently accelerated by the termination shocks and high-energy electrons mainly concentrate around the two shocks. The synthetic HXR emission images display two distinct sources extending to $>$100 keV below and above the reconnection region, with the upper source much fainter than the lower one. The HXR energy spectra of the two coronal sources show similar spectral slopes, consistent with the observations. Our simulation results suggest that the flare termination shock can be a promising particle acceleration mechanism in explaining the double-source nonthermal emissions in solar flares.