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CURRENT HELICITY OF ACTIVE REGIONS AS A TRACER OF LARGE-SCALE SOLAR MAGNETIC HELICITY

机译:活动区域的当前螺旋度作为大型太阳能螺旋度的追踪器

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We demonstrate that the current helicity observed in solar active regions traces the magnetic helicity of the large-scale dynamo generated field. We use an advanced two-dimensional mean-field dynamo model with dynamo saturation based on the evolution of the magnetic helicity and algebraic quenching. For comparison, we also studied a more basic two-dimensional mean-field dynamo model with simple algebraic alpha-quenching only. Using these numerical models we obtained butterfly diagrams both for the small-scale current helicity and also for the large-scale magnetic helicity, and compared them with the butterfly diagram for the current helicity in active regions obtained from observations. This comparison shows that the current helicity of active regions, as estimated by –A B evaluated at the depth from which the active region arises, resembles the observational data much better than the small-scale current helicity calculated directly from the helicity evolution equation. Here B and A are, respectively, the dynamo generated mean magnetic field and its vector potential. A theoretical interpretation of these results is given.
机译:我们证明,在太阳活动区中观察到的当前螺旋线跟踪了大型发电机产生磁场的磁性螺旋线。基于磁螺旋和代数淬灭的演化,我们使用具有发电机饱和的高级二维平均场发电机模型。为了进行比较,我们还研究了仅使用简单代数alpha猝灭的更基本的二维平均场发电机模型。使用这些数值模型,我们既获得了小规模电流螺旋的蝶形图,也获得了大规模磁性螺旋的蝶形图,并将它们与通过观测获得的有效区域中电流螺旋性的蝶形图进行了比较。这种比较表明,由–A B估计的,在活动区域​​出现的深度处的活动区域的当前螺旋度比直接从螺旋度演化方程计算的小规模当前螺旋度更好地类似于观测数据。在这里,B和A分别是发电机产生的平均磁场及其矢量势。给出了这些结果的理论解释。

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