论文标题
Fe-L复合物II的X射线光谱:来自EBIT实验的原子数据约束和Capella的X射线光栅观测
X-ray spectra of the Fe-L complex II: atomic data constraints from EBIT experiment and X-ray grating observations of Capella
论文作者
论文摘要
Perseus群集的Hitomi结果表明,准确的原子模型对于X射线光谱任务的成功至关重要,并且与对仪器校准和天体物理建模的知识一样重要。准备模型需要采用多方面的方法,包括理论计算,实验室测量以及使用实际观测值进行校准。在上一篇论文中,我们列出了对形成Fe-L复合物的过渡的电子冲击横截面的计算。在目前的工作中,我们系统地测试了在电子束离子陷阱实验中测量的离子的横截面的计算。在实验数据中,对电子束能和X射线光子能量进行了二维分析,用于在电介质重组,直接效果激发和共振激发过程之后解散辐射通道。通过实验室测量进行校准的数据进一步馈送到Capella Chandra光栅光谱的全球建模中。我们研究并比较了拟合物理参数对基础原子数据和天体物理等离子体建模的拟合质量以及敏感性。我们进一步列出了观察和当前计算之间的潜在分歧领域,这反过来又需要在理论计算和有针对性的实验室测量中进行重新努力。
The Hitomi results for the Perseus cluster have shown that accurate atomic models are essential to the success of X-ray spectroscopic missions, and just as important as knowledge on instrumental calibration and astrophysical modeling. Preparing the models requires a multifaceted approach, including theoretical calculations, laboratory measurements, and calibration using real observations. In a previous paper, we presented a calculation of the electron impact cross sections on the transitions forming the Fe-L complex. In the present work, we systematically test the calculation against cross sections of ions measured in an electron beam ion trap experiment. A two-dimensional analysis in the electron beam energies and X-ray photon energies is utilized to disentangle radiative channels following dielectronic recombination, direct electron-impact excitation, and resonant excitation processes in the experimental data. The data calibrated through laboratory measurements are further fed into global modeling of the Chandra grating spectrum of Capella. We investigate and compare the fit quality, as well as sensitivity of the derived physical parameters to the underlying atomic data and the astrophysical plasma modeling. We further list the potential areas of disagreement between the observation and the present calculations, which in turn calls for renewed efforts in theoretical calculations and targeted laboratory measurements.