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A method for global inversion of multi-resolution solar data

机译:一种多分辨率太阳数据的全局反演方法

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Understanding the complex dynamics and structure of the upper solar atmosphere strongly benefits from the use of a combination of several diagnostics. Frequently, such diverse diagnostics can only be obtained from telescopes and/or instrumentation operating at widely different spatial resolution. To optimize the utilization of such data, we propose a new method for the global inversion of data acquired at different spatial resolution. The method has its roots in the Levenberg-Marquardt algorithm but involves the use of linear operators to transform and degrade the synthetic spectra of a highly resolved guess model to account for the effects of spatial resolution, data sampling, alignment, and image rotation of each of the datasets. We have carried out a list of numerical experiments to show that our method allows for the extraction of spatial information from two simulated datasets that have gone through two different telescope apertures and that are sampled in different spatial grids. Our results show that each dataset contributes in the inversion by constraining information at the spatial scales that are present in each of the datasets, and no negative effects are derived from the combination of multiple resolution data. This method is especially relevant for chromospheric studies that attempt to combine datasets acquired with different telescopes and/or datasets acquired at different wavelengths. The techniques described in the present study will also help to address the ever increasing resolution gap between space-borne missions and forthcoming ground-based facilities.
机译:通过结合使用多种诊断程序,可以深入了解高层太阳大气的复杂动力学和结构。通常,只能从望远镜和/或在宽泛的空间分辨率下运行的仪器中获得这种多样的诊断信息。为了优化此类数据的利用,我们提出了一种新方法,用于以不同空间分辨率对数据进行全局反演。该方法起源于Levenberg-Marquardt算法,但涉及使用线性算子对高度解析的猜测模型的合成光谱进行变换和降级,以考虑空间分辨率,数据采样,对齐和每个图像旋转的影响数据集。我们进行了一系列数值实验,以表明我们的方法允许从经过两个不同望远镜孔径并在不同空间网格中采样的两个模拟数据集中提取空间信息。我们的结果表明,每个数据集都通过在每个数据集中存在的空间尺度上约束信息来促进反演,并且从多分辨率数据的组合中不会产生负面影响。此方法特别适用于色球层研究,这些研究试图将用不同望远镜获得的数据集和/或以不同波长获得的数据集进行组合。本研究中描述的技术还将有助于解决太空飞行任务与即将到来的地面设施之间日益扩大的分辨率差距。

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