论文标题
在较低太阳大气中观察到的爆炸事件的速度响应:I。流动酷回路系统的形成
Velocity Response of the Observed Explosive Events in the Lower Solar Atmosphere: I. Formation of the Flowing Cool Loop System
论文作者
论文摘要
我们使用插入界面区域成像光谱仪(IRIS)的缝隙jaw成像仪(SJI)观察到凉爽回路中的血浆流。 Huang等。 (2015年)观察到在此类循环的脚步处,异常扩大的Si IV 1403埃静脉线轮廓归因于爆炸事件(EES)的签名。我们选择了一个单向流动的酷回路系统,其中虹膜观察到,其中一个脚步与Si IV线的概况显着相关。线曲线间接地表明,过渡区域(TR)下方的大量EE发生,而直接输入较大的速度增强 /扰动进一步导致了观察到的环路系统中的等离子体流动。观察到的特征是在模型气氛中实现的,在模型气氛中,低较低的双极磁场系统通过速度脉冲在染色层中扰动,最大振幅为200 km/s。数据驱动的二维数值模拟表明,血浆运动以相似的方式演变为IRIS以流动等离子体的形式观察到的,填充了冷环系统的骨架。我们比较了模型框架中冷环系统的时空演化与观察结果,并得出结论,它们的形成主要与散发能量释放的速度响应相关,而在染色体/TR中的脚部上方的速度释放。我们的观察结果和建模结果表明,最有可能与EE相关的速度响应可能是下太阳大气中流动凉爽环系统动力学和能量学的主要候选者之一。
We observe plasma flows in cool loops using the Slit-Jaw Imager (SJI) onboard the Interface Region Imaging Spectrometer (IRIS). Huang et al. (2015) observed unusually broadened Si IV 1403 angstrom line profiles at the footpoints of such loops that were attributed to signatures of explosive events (EEs). We have chosen one such uni-directional flowing cool loop system observed by IRIS where one of the footpoints is associated with significantly broadened Si IV line profiles. The line profile broadening indirectly indicates the occurrence of numerous EEs below the transition region (TR), while it directly infers a large velocity enhancement /perturbation further causing the plasma flows in the observed loop system. The observed features are implemented in a model atmosphere in which a low-lying bi-polar magnetic field system is perturbed in the chromosphere by a velocity pulse with a maximum amplitude of 200 km/s. The data-driven 2-D numerical simulation shows that the plasma motions evolve in a similar manner as observed by IRIS in the form of flowing plasma filling the skeleton of a cool loop system. We compare the spatio-temporal evolution of the cool loop system in the framework of our model with the observations, and conclude that their formation is mostly associated with the velocity response of the transient energy release above their footpoints in the chromosphere/TR. Our observations and modeling results suggest that the velocity responses most likely associated to the EEs could be one of the main candidates for the dynamics and energetics of the flowing cool loop systems in the lower solar atmosphere.