论文标题

AGN中的X射线磁盘/风退化

The X-ray Disk/Wind Degeneracy in AGN

论文作者

Parker, M. L., Matzeu, G. A., Matthews, J. H., Middleton, M. J., Dauser, T., Jiang, J., Joyce, A. M.

论文摘要

来自积聚磁盘和磁盘风中的相对论FE K排放线编码有关黑洞及其积聚和反馈机制的关键信息。我们表明,这两个过程原则上可以产生无法区分的线条曲线,因此不能在光谱上分解它们。我们认为,在许多情况下,这两种过程都可能有助于净线,并且它们的相对贡献不能仅仅通过Fe K光谱遵守。在迄今为止,几乎所有对Fe K发射的研究中,假定单个过程(磁盘反射或风康普顿散射)占主导地位。我们证明,将单个工艺发射模型(纯反射或纯风)拟合到混合线轮廓中会导致关键参数的估计值(例如质量流出速率和自旋)的较大系统偏见。我们讨论了减轻这种效果的各种策略,例如包括涵盖Compton Hump的高能量数据以及对未来X射线任务的影响。

Relativistic Fe K emission lines from accretion disks and from disk winds encode key information about black holes, and their accretion and feedback mechanisms. We show that these two processes can in principle produce indistinguishable line profiles, such that they cannot be disentangled spectrally. We argue that it is likely that in many cases both processes contribute to the net line profile, and their relative contributions cannot be constrained purely by Fe K spectroscopy. In almost all studies of Fe K emission to date, a single process (either disk reflection or wind Compton scattering) is assumed to dominate the total line profile. We demonstrate that fitting a single process emission model (pure reflection or pure wind) to a hybrid line profile results in large systematic biases in the estimates of key parameters, such as mass outflow rate and spin. We discuss various strategies to mitigate this effect, such as including high energy data covering the Compton hump, and the implications for future X-ray missions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源