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The Radial Distribution of Magnetic Helicity in the Solar Convective Zone: Observations and Dynamo Theory

机译:太阳对流区电磁螺旋的径向分布:观测和发电机理论

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摘要

We continue our attempt to connect observational data on current helicity in solar active regions with solar dynamo models. In addition to our previous results about temporal and latitudinal distributions of current helicity (Kleeorin et al. 2003), we argue that some information concerning the radial profile of the current helicity averaged over time and latitude can be extracted from the available observations. The main feature of this distribution can be presented as follows. Both shallow and deep active regions demonstrate a clear dominance of one sign of current helicity in a given hemisphere during the whole cycle. Broadly speaking, current helicity has opposite polarities in the Northern and Southern hemispheres, although there are some active regions that violate this polarity rule. The relative number of active regions violating the polarity rule is significantly higher for deeper active regions. A separation of active regions into `shallow', `middle' and `deep' is made by comparing their rotation rate and the helioseismic rotation law. We use a version of Parker's dynamo model in two spatial dimensions, that employs a nonlinearity based on magnetic helicity conservation arguments. The predictions of this model about the radial distribution of solar current helicity appear to be in remarkable agreement with the available observational data; in particular the relative volume occupied by the current helicity of "wrong" sign grows significantly with the depth.
机译:我们继续尝试将太阳活动区域中当前螺旋度的观测数据与太阳发电机模型联系起来。除了我们先前关于当前螺旋线的时间和纬度分布的结果(Kleeorin等人,2003年)之外,我们认为可以从现有观测资料中获得一些关于当前螺旋线在时间和纬度上平均的径向轮廓的信息。这种分布的主要特征可以表现如下。在整个周期中,浅层和深层活动区域都显示出在给定半球中当前螺旋度的一个明显优势。广义上讲,尽管有些活跃区域违反了这种极性规则,但在北半球和南半球,当前的螺旋线具有相反的极性。对于更深的有源区域,违反极性规则的有源区域的相对数量明显更高。通过比较主动区的旋转速率和日震旋转定律,将其划分为“浅”,“中”和“深”。我们在两个空间维度上使用Parker发电机模型的一种版本,该模型采用基于磁螺旋守恒论据的非线性。该模型关于太阳电流螺旋线径向分布的预测似乎与现有的观测数据非常吻合。特别是当前“错误”符号的螺旋所占的相对体积随着深度的增加而显着增加。

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