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首页> 外文期刊>Solar physics >Magnetic Connectivity Between Active Regions 10987, 10988, and 10989 by Means of Nonlinear Force-Free Field Extrapolation
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Magnetic Connectivity Between Active Regions 10987, 10988, and 10989 by Means of Nonlinear Force-Free Field Extrapolation

机译:通过非线性自由力场外推法在有源区域10987、10988和10989之间建立磁连接

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Extrapolation codes for modelling the magnetic field in the corona in Cartesian geometry do not take the curvature of the Sun's surface into account and can only be applied to relatively small areas, e. g., a single active region. We apply a method for nonlinear force-free coronal magnetic field modelling of photospheric vector magnetograms in spherical geometry which allows us to study the connectivity between multi-active regions. We use Vector Spectromagnetograph (VSM) data from the Synoptic Optical Long-term Investigations of the Sun (SOLIS) survey to model the coronal magnetic field, where we study three neighbouring magnetically connected active regions (ARs 10987, 10988, 10989) observed on 28, 29, and 30 March 2008, respectively. We compare the magnetic field topologies and the magnetic energy densities and study the connectivities between the active regions. We have studied the time evolution of the magnetic field over the period of three days and found no major changes in topologies, as there was no major eruption event. From this study we have concluded that active regions are much more connected magnetically than the electric current.
机译:用于以笛卡尔几何形状对电晕中磁场建模的外推代码没有考虑到太阳表面的曲率,只能用于相对较小的区域,例如:例如,单个有源区域。我们为球形几何中的光球矢量磁图应用了一种非线性的无力日冕磁场建模方法,这使我们能够研究多个活动区域之间的连通性。我们使用来自太阳的天气长期光学调查(SOLIS)的矢量光谱电磁仪(VSM)数据对日冕磁场进行建模,在这里我们研究了28个观测到的三个相邻的磁连接活动区域(ARs 10987、10988、10989) ,2008年3月29日和30日。我们比较了磁场拓扑和磁能密度,并研究了有源区之间的连通性。我们研究了三天内磁场的时间演化,发现拓扑没有重大变化,因为没有重大喷发事件。根据这项研究,我们得出的结论是,有源区与电流之间的磁连接更多。

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