论文标题
部分可观测时空混沌系统的无模型预测
Data-constrained MHD simulation for the eruption of a filament-sigmoid system in solar active region 11520
论文作者
论文摘要
在2012年7月12日在太阳活跃区11520的X1.4耀斑期间观察到细丝和乙状结肠的分离,但相应的磁场变化尚不清楚。我们使用通量绳索插入方法和磁通量爆发代码构建了丝状 - 丝状系统的数据约束的磁性水力动力学模拟,该磁场的磁场演变可能解释了低覆盖细丝和高层热通道(Sigmoid)的分离。磁模型的初始状态包含带有双曲线通量管的磁通绳,无效点结构和覆盖磁场的上覆盖。我们发现,零点处的磁重连接使乙状结肠的右脚从一个正磁极(P1)移到另一个(P3)。双曲线通量管的绑扎切割重新连接发生,并迅速切断了低洼的细丝和高覆的乙状结肠的连接。最后,高灯笼的乙状结肠爆发并成长为冠状质量弹出,而低洼的细丝保持稳定。在模拟中重现了观察到的双J形耀斑丝带,半圆形色带和几个循环的亮度,其中磁通绳的喷发包括冲动加速和传播阶段。
The separation of a filament and sigmoid is observed during an X1.4 flare on July 12, 2012 in solar active region 11520, but the corresponding magnetic field change is not clear. We construct a data-constrained magnetohydrodynamic simulation of the filament-sigmoid system with the flux rope insertion method and magnetic flux eruption code, which produces the magnetic field evolution that may explain the separation of the low-lying filament and high-lying hot channel (sigmoid). The initial state of the magnetic model contains a magnetic flux rope with a hyperbolic flux tube, a null point structure and overlying confining magnetic fields. We find that the magnetic reconnections at the null point make the right footpoint of the sigmoid move from one positive magnetic polarity (P1) to another (P3). The tether-cutting reconnection at the hyperbolic flux tube occurs and quickly cuts off the connection of the low-lying filament and high-lying sigmoid. In the end, the high-lying sigmoid erupts and grows into a coronal mass ejection, while the low-lying filament stays stable. The observed double J-shaped flare ribbons, semi-circular ribbon, and brightenings of several loops are reproduced in the simulation, where the eruption of the magnetic flux rope includes the impulsive acceleration and propagation phases.