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EVOLUTION AND DISTRIBUTION OF CURRENT HELICITY IN FULL-SUN SIMULATIONS

机译:全太阳模拟中当前螺旋度的演化与分布

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Current helicity quantifies the location of twisted and sheared nonpotential structures in a magnetic field. We simulate the evolution of magnetic fields in the solar atmosphere in response to flux emergence and shearing by photospheric motions. In our global-scale simulation over many solar rotations, the latitudinal distribution of current helicity develops a clear statistical pattern, matching the observed hemispheric sign at active latitudes. In agreement with observations, there is significant scatter and intermixing of both signs of helicity, where we find local values of current helicity density that are much higher than those predicted by linear force-free extrapolations. Forthcoming full-disk vector magnetograms from the Solar Dynamics Observatory will provide an ideal opportunity to test our theoretical results on the evolution and distribution of current helicity, both globally and in single active regions.
机译:电流螺旋度量化了扭曲和剪切的非电势结构在磁场中的位置。我们模拟了太阳光大气中磁场对光通量运动产生的通量和剪切作用的响应。在我们对许多太阳旋转的全球尺度模拟中,当前螺旋线的纬度分布形成了清晰的统计模式,与在活动纬度处观测到的半球符号相匹配。与观察结果一致,两个螺旋度都有明显的分散和混合,在这里我们发现当前螺旋度密度的局部值远高于无线性外推法所预测的局部值。即将到来的太阳动力学天文台的全磁盘矢量磁图将提供一个理想的机会,以测试我们关于全球和单个活动区域中当前螺旋度的演变和分布的理论结果。

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