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Reverse-Engineering Laboratory Astrophysics: Oxygen Inner-shell Absorption in the ISM

机译:逆向工程实验室天体物理学:ISM中的氧气内壳吸收

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The modeling of X-ray spectra from photoionized astrophysical plasmas has been significantly improved due to recent advancements in the theoretical and numerical frameworks, as well as a consolidated and reliable atomic database of inner-shell transitions for all the relevant ions. We discuss these developments and the current state of X-ray spectral modeling in the context of oxygen cold absorption in the interstellar medium (ISM). Unconventionally, we use high-resolution astrophysical observations to accurately determine line positions, and adjust the theoretical models for a comprehensive interpretation of the observed X-ray spectra. This approach has brought to light standing discrepancies in the neutral oxygen absorption-line positions determined from observations and laboratory measurements. We give an overview of our current efforts to devise a definitive model of oxygen photoabsorption that can help to resolve the existing controversy regarding ISM atomic and molecular fractions.
机译:由于最近理论和数值框架的进步,以及所有相关离子的内壳过渡的综合和可靠原子数据库,从光相静看天体物理等离子体的建模已经显着改善。我们讨论了在星际介质(ISM)中氧气冷吸收的背景下的X射线光谱建模的这些发展和当前状态。无常识,我们使用高分辨率的天体物理观测来准确地确定线位置,并调整理论模型,以了解观察到的X射线光谱的全面解释。这种方法已经达到了从观察结果和实验室测量确定的中性氧吸收线位置的光差异。我们概述了我们目前的努力,设计了一种可帮助解决ISM原子和分子级分的现有争议的最终氧气光学作品。

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