论文标题
Fe-L复合物III的X射线光谱:原子数据中的系统不确定性
X-ray spectra of the Fe-L complex III: systematic uncertainties in the atomic data
论文作者
论文摘要
X射线天文学界的请求日益增长,以定量估计系统不确定性,该估计源自血浆代码中使用的原子数据。尽管有几项研究使用理论计算研究了原子数据不确定性,但通常没有针对此任务的普遍接受解决方案。我们提出了一种新的方法,用于估算当前碰撞等离子体模型的线发射率中的不确定性,这主要基于对观察到的恒星冠和星系簇的高分辨率光谱的专门分析。我们发现,在正确考虑了离子浓度计算的其他不确定性之后,观察到的线的系统不确定性始终显示出与模型线通量的反相关。通常,光谱中的强线更好地复制了,这表明主要跃迁的原子数据和建模比次要跃迁更准确。发现这种潜在的抗相关性大致独立于源特性,线位置,离子物种和线形成过程。我们进一步将我们的方法应用于对碰撞血浆来源的模拟Xrism和雅典娜的观察,并讨论了不确定性对这些光谱解释的影响。典型的不确定性在温度下为1-2%,在O,NE,Fe,Mg和Ni的丰度中为3-20%。
There has been a growing request from the X-ray astronomy community for a quantitative estimate of systematic uncertainties originating from the atomic data used in plasma codes. Though there have been several studies looking into atomic data uncertainties using theoretical calculations, in general, there is no commonly accepted solution for this task. We present a new approach for estimating uncertainties in the line emissivities for the current models of collisional plasma, mainly based upon dedicated analysis of observed high resolution spectra of stellar coronae and galaxy clusters. We find that the systematic uncertainties of the observed lines consistently show anti-correlation with the model line fluxes, after properly accounting for the additional uncertainties from the ion concentration calculation. The strong lines in the spectra are in general better reproduced, indicating that the atomic data and modeling of the main transitions are more accurate than those for the minor ones. This underlying anti-correlation is found to be roughly independent on source properties, line positions, ion species, and the line formation processes. We further apply our method to the simulated XRISM and Athena observations of collisional plasma sources and discuss the impact of uncertainties on the interpretation of these spectra. The typical uncertainties are 1-2% on temperature and 3-20% on abundances of O, Ne, Fe, Mg, and Ni.