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首页> 外文期刊>The Astrophysical journal >HELICITY EVOLUTION IN EMERGING ACTIVE REGIONS
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HELICITY EVOLUTION IN EMERGING ACTIVE REGIONS

机译:新兴活动地区的健康进化

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We study the evolution of twist and magnetic helicity in the coronal fields of active regions as they emerge. We use multiday sequences of Solar and Heliospheric Observatory Michelson Doppler Interferometer magne-tograms to characterize the region's emergence. We quantify the overall twist in the coronal field, α, by matching a linear force-free field to bright coronal structures in EUV images. At the beginning of emergence, all regions studied have α approx= 0. As the active region grows, α increases and reaches a plateau within approximately 1 day of emergence. The inferred helicity transport rate is larger than differential rotation could produce. Following the 2000 work of Longcope & Welsch, we develop a model for the injection of helicity into the corona by the emergence of a twisted flux tube. This model predicts a ramp-up period of approximately 1 day. The observed time history α(t) is fitted by this model assuming reasonable values for the sub-photospheric Alfven speed. The implication is that helicity is carried by twisted flux tubes rising from the convection zone and transported across the photosphere by spinning of the poles driven by magnetic torque.
机译:我们研究了活动区域的日冕场中扭曲和磁性螺旋的演化。我们使用太阳和太阳天文台迈克尔逊多普勒干涉仪磁线图的多日序列来表征该地区的出现。我们通过将线性无力场与EUV图像中的明亮冠状结构匹配来量化冠状场α中的整体扭曲。在出苗开始时,所有研究区域的α均约为0。随着活动区域的增长,α会增加,并在出苗后约1天达到平稳。推断的螺旋传输速率大于差速旋转可能产生的速率。继Longcope&Welsch 2000年的工作之后,我们开发了一种模型,用于通过扭曲通量管的出现将螺旋线注入电晕。该模型预计启动周期约为1天。假设亚光圈Alfven速度的值合理,则此模型拟合的观测时间历史α(t)。这意味着螺旋性是由从对流区升起的扭曲通量管承载的,并通过磁转矩驱动的磁极旋转而在光球中传输。

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