论文标题

新测量解决关键的天体物理FE XVII振荡器强度问题

New Measurement Resolves Key Astrophysical Fe XVII Oscillator Strength Problem

论文作者

Kühn, Steffen, Cheung, Charles, Oreshkina, Natalia S., Steinbrügge, René, Togawa, Moto, Bernitt, Sonja, Berger, Lukas, Buck, Jens, Hoesch, Moritz, Seltmann, Jörn, Trinter, Florian, Keitel, Christoph H., Kozlov, Mikhail G., Porsev, Sergey G., Gu, Ming Feng, Porter, F. Scott, Pfeifer, Thomas, Leutenegger, Maurice A., Harman, Zoltán, Safronova, Marianna S., López-Urrutia, José R. Crespo, Shah, Chintan

论文摘要

X射线天文学的最持久和深入研究的问题之一是对最先进的理论的分歧以及对等离子诊断的两个Fe XVII过渡的强度比的观察,并被称为3C和3D。我们通过增加两次半次的分辨能力,与我们以前的工作相比,我们在Petra III同步设施中揭露了这一难题。洛伦兹的翅膀迄今与背景没有区别,因此没有建模,从而产生了有偏见的线强度估计。目前的实验振荡器 - 强度$ r_ \ mathrm {exp} = f _ {\ mathrm {3c}}}/f _ {\ Mathrm {\ Mathrm {3D}} = 3.51(2) $ r_ \ mathrm {th} = 3.55(2)$的计算,以及一些以前的理论预测。为了进一步排除与测量比率相关的任何不确定性,我们还确定了3C和3D跃迁的单个自然线宽和振荡器强度,这也与该理论一致。最终,这解决了数十年来Fe XVII振荡器强度的奥秘。

One of the most enduring and intensively studied problems of X-ray astronomy is the disagreement of state-of-the art theory and observations for the intensity ratio of two Fe XVII transitions of crucial value for plasma diagnostics, dubbed 3C and 3D. We unravel this conundrum at the PETRA III synchrotron facility by increasing the resolving power two and a half times and the signal-to-noise ratio thousand-fold compared to our previous work. The Lorentzian wings had hitherto been indistinguishable from the background and were thus not modeled, resulting in a biased line-strength estimation. The present experimental oscillator-strength ratio $R_\mathrm{exp}=f_{\mathrm{3C}}/f_{\mathrm{3D}}=3.51(2)_{\mathrm{stat}}(7)_{\mathrm{sys}}$ agrees with our state-of-the-art calculation of $R_\mathrm{th}=3.55(2)$, as well as with some previous theoretical predictions. To further rule out any uncertainties associated with the measured ratio, we also determined the individual natural linewidths and oscillator strengths of 3C and 3D transitions, which also agree well with the theory. This finally resolves the decades-old mystery of Fe XVII oscillator strengths.

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