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Time-dependent data-driven coronal simulations of AR 12673 from emergence to eruption

机译:从出现到喷发的时间依赖数据驱动的AR 12673冠冕模拟

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Aims. We present a detailed study of the magnetic evolution of AR 12673 using a magnetofrictional modelling approach. Methods. The fully data-driven and time-dependent model was driven with maps of the photospheric electric field, inverted from vector magnetogram observations obtained from the Helioseismic and Magnetic Imager (HMI) on board the Solar Dynamics Observatory (SDO). Our analysis was aided by studying the evolution of metrics such as the free magnetic energy and the current-carrying helicity budget of the domain, maps of the squashing factor and twist, and plots of the current density. These allowed us to better understand the dynamic nature of the magnetic topology. Results. Our simulation captured the time-dependent nature of the active region and the erupting flux rope associated with the X-class flares on 6 September 2017, including the largest of solar cycle 24. Additionally, our results suggest a possible threshold for eruptions in the ratio of current-carrying helicity to relative helicity. Conclusion. The flux rope was found to be a combination of two structures that partially combine during the eruption process. Our time-dependent data-driven magnetofrictional model is shown to be capable of generating magnetic fields consistent with extreme ultraviolet (EUV) observations.
机译:目的我们使用磁摩擦建模方法对AR 12673的磁演化进行了详细研究。方法。完全由数据驱动且与时间相关的模型是由光球电场的图驱动的,该图是从太阳动力学天文台(SDO)上的Heismesismic and Magnetic Imager(HMI)获得的矢量磁图观测结果中反转的。我们的分析是通过研究度量的演变而进行的,这些度量包括域的自由磁能和载流的螺旋度预算,挤压因子和扭曲的图以及电流密度的图。这些使我们可以更好地了解磁拓扑的动态性质。结果。我们的模拟捕获了活动区域的时间依赖性,以及2017年9月6日与X级耀斑相关的喷发通量绳,包括最大的太阳活动周期24。此外,我们的结果表明该比率可能存在喷发阈值载流螺旋相对于相对螺旋。结论。发现磁通绳是在喷发过程中部分结合的两个结构的组合。我们的时间相关数据驱动的磁摩擦模型显示出能够产生与极紫外(EUV)观测一致的磁场。

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