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Measuring relative abundances in the solar corona with optimised linear combinations of spectral lines

机译:使用光谱线的优化线性组合测量日冕中的相对丰度

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Context. Elemental abundances in some coronal structures differ significantly from photospheric abundances, with a dependence on the first ionization potential (FIP) of the element. Measuring these FIP-dependent abundance biases is important for coronal and heliospheric physics. Aims. We aim to build a method for optimal determination of FIP biases in the corona from spectroscopic observations in a way that is in practice independent from differential emission measure (DEM) inversions. Methods. We optimised linear combinations of spectroscopic lines of low-FIP and high-FIP elements so that the ratio of the corresponding radiances yields the relative FIP bias with good accuracy for any DEM in a small set of typical DEMs. Results. These optimised linear combinations of lines allow retrieval of a test FIP bias map with good accuracy for all DEMs in the map. The results also compare well with a FIP bias map obtained from observations using a DEM-dependent method. Conclusions. The method provides a convenient, fast, and accurate way of computing relative FIP bias maps. It can be used to optimise the use of existing observations and the design of new observations and instruments.
机译:上下文。一些冠状结构中的元素丰度与光球丰度有显着差异,这取决于元素的第一电离能(FIP)。测量这些依赖于FIP的丰度偏差对于日冕和日球物理学很重要。目的我们旨在建立一种从光谱学观察中最佳确定电晕中FIP偏差的方法,该方法实际上与差分发射测量(DEM)反演无关。方法。我们对低FIP和高FIP元素的光谱线的线性组合进行了优化,以使相应辐射度的比值可以在少量典型DEM中以任意精度生成相对FIP偏置,且精度较高。结果。这些线的优化线性组合允许针对图中的所有DEM检索具有良好准确性的测试FIP偏差图。结果也与使用依赖DEM的方法从观测中获得的FIP偏差图进行了比较。结论。该方法提供了一种方便,快速和准确的方式来计算相对FIP偏差图。它可用于优化现有观测值的使用以及新观测值和仪器的设计。

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