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Analysis on correlations between subsurface kinetic helicity and photospheric current helicity in active regions

机译:活性地区地下动力学螺旋与拍摄电流螺旋的相关性分析

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An investigation on correlations between photospheric current helicity and subsurface kinetic helicity is carried out by analyzing vector magnetograms and subsurface velocities for two rapidly developing active regions. The vector magnetograms are from the Solar Dynamics Observatory/Helioseismic and Magnetic Imager (SDO/HMI) observed Stokes parameters, and the subsurface velocity is from time-distance data-analysis pipeline using HMI Dopplergrams. Over a span of several days, the evolution of the weighted current helicity shows a tendency similar to that of the weighted subsurface kinetic helicity, attaining a correlation coefficient above 0.60 for both active regions. Additionally, there seems to be a phase lag between the evolutions of the unweighted current and subsurface kinetic helicities for one of the active regions. The good correlation between these two helicities indicates that there is some intrinsic connection between the interior dynamics and photospheric magnetic twistedness inside active regions, which may help to interpret the well-known hemispheric preponderance of current-helicity distribution.
机译:通过分析两种快速发展的活性区域的矢量省略极谱和地下速度来进行光学电流螺旋和地下动力学螺旋之间的相关性研究。矢量省略矢量来自太阳能动力学观测所/皮埃斯主义和磁性成像仪(SDO / HMI)观察到的斯托克斯参数,并且使用HMI多普列卡镜从时距数据分析管道中的地下速度。在几天的跨度中,加权电流螺旋的演变显示了与加权地下动力学螺旋类似的趋势,其具有两个有源区以上0.60以上的相关系数。另外,似乎在一个有源区的未加权电流和地下动力学螺旋的演变之间存在相位滞后。这两种螺旋之间的良好相关性表明,有源区内部动力学和光学磁性扭曲之间存在一些内在的连接,这可能有助于解释电流螺旋分布的众所周知的半球优势。

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