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ATMOSPHERIC IMAGING ASSEMBLY OBSERVATIONS OF CORONAL LOOPS: CROSS-FIELD TEMPERATURE DISTRIBUTIONS

机译:冠状环的大气成像大会观测:交叉场温度分布

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We construct revised response functions for the Atmospheric Imaging Assembly (AIA) using the new atomic data, ionization equilibria, and coronal abundances available in CHIANTI 7.1. We then use these response functions in multithermal analysis of coronal loops, which allows us to determine a specific cross-field temperature distribution without ad hoc assumptions. Our method uses data from the six coronal filters and the Monte Carlo solutions available from our differential emission measure (DEM) analysis. The resulting temperature distributions are not consistent with isothermal plasma. Therefore, the observed loops cannot be modeled as single flux tubes and must be composed of a collection of magnetic strands. This result is now supported by observations from the High-resolution Coronal Imager, which show fine-scale braiding of coronal strands that are reconnecting and releasing energy. Multithermal analysis is one of the major scientific goals of AIA, and these results represent an important step toward the successful achievement of that goal. As AIA DEM analysis becomes more straightforward, the solar community will be able to take full advantage of the state-of-the-art spatial, temporal, and temperature resolution of the instrument.
机译:我们使用CHIANTI 7.1中可用的新原子数据,电离平衡和日冕丰度为大气成像组件(AIA)构造了修订的响应函数。然后,我们在冠状环的多重热分析中使用这些响应函数,这使我们无需特设假设即可确定特定的跨场温度分布。我们的方法使用来自六个日冕过滤器的数据以及可从我们的差分发射量度(DEM)分析获得的蒙特卡洛解决方案。所得的温度分布与等温等离子体不一致。因此,观察到的回路不能建模为单个磁通管,而必须由一组磁线组成。现在,高分辨率冠状动脉成像仪的观察结果支持了这一结果,该观察结果显示了正在重新连接并释放能量的冠状股线的精细编织。多重热分析是友邦保险的主要科学目标之一,这些结果代表了成功实现该目标的重要一步。随着AIA DEM分析变得更加直接,太阳能界将能够充分利用仪器的最新空间,时间和温度分辨率。

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