ARTop: an open-source tool for measuring active region topology at the solar photosphere

K. Alielden, D. MacTaggart, Q. Ming, C. Prior, B. Raphaldini
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引用次数: 1

Abstract

The importance of measuring topological quantities, such as magnetic helicity, in solar observations has long been recognized. In particular, topological quantities play an important role in both understanding and predicting solar eruptions. In this paper, we present ARTop (Active Region Topology), an open-source and end-to-end software tool that allows researchers to calculate the fluxes of topological quantities based on solar magnetograms. In addition to this, ARTop also allows for the efficient analysis of these quantities in both 2D maps and time series. ARTop calculates the fluxes of magnetic helicity and magnetic winding, together with particular decompositions of these quantities. To perform these calculations, SHARP magnetograms are downloaded and velocity maps are created using the DAVE4VM method. Visualization tools, written in Python, are provided to aid in the selection of appropriate output variables and for the straightforward creation of maps and time series. Additionally, other analysis functions are included to facilitate and aid solar flare investigations. This software offers researchers a powerful tool for investigating the behaviour of active regions and the origins of space weather.
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ARTop:一个用于测量太阳光球活跃区域拓扑结构的开源工具
在太阳观测中,测量拓扑物理量(如磁螺旋度)的重要性早已被认识到。特别是,拓扑量在理解和预测太阳爆发方面发挥着重要作用。在本文中,我们提出了ARTop(活动区域拓扑),这是一个开源的端到端软件工具,允许研究人员基于太阳磁图计算拓扑量的通量。除此之外,ARTop还允许在2D地图和时间序列中对这些数量进行有效分析。ARTop计算磁螺旋度和磁线圈的通量,以及这些量的具体分解。为了执行这些计算,需要下载SHARP磁图,并使用DAVE4VM方法创建速度图。提供了用Python编写的可视化工具,以帮助选择适当的输出变量,并直接创建地图和时间序列。此外,还包括其他分析功能,以促进和帮助太阳耀斑的研究。该软件为研究人员提供了一个强大的工具,用于调查活跃区域的行为和空间天气的起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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