论文标题
MHD驱动的超快速流出的AGNS的讲述光谱特征
Tell-Tale Spectral Signatures of MHD-driven Ultra-Fast Outflows in AGNs
论文作者
论文摘要
我们旨在通过在简单的磁磁性(MHD)框架的背景下利用积聚磁盘风模型来探索活性银河核(AGN)宽带X射线光谱(AGNS)中预测的多离子UFO的光谱特征。我们主要集中于检查光谱依赖对许多关键属性的依赖。 (1)电离光度比$λ_ {\ rm ion} $,(2)亮点风密度斜率$ p $ $ p $,(3)光学/uv-to-t-to-x射线强度$ $α_ {\ rm ox ox} $,(4)倾斜度$θ$,(5)x ray photon $ quon $ quent $ quent $ unigention $ guenty $γ$ find $γ$γ$γ$γ$和6)。由于强调亚埃德丁顿次级体制中的无线电定价,多离子UFO光谱是系统地计算出的,这是这些参数的函数,以表明MHD驱动的UFO烙印具有平均明显的蓝色尾巴结构的独特的不对称吸收线轮廓。由于其特定的运动学和密度结构,这种特征线的签名是对本工作中简化的MHD磁盘模型的通用。这些吸收线轮廓的特性可以用作诊断,以区分给定MHD风参数的不同风驱动机制,甚至是特定值。我们还提出了高富度微氧化表模拟,以期预期即将到来的{\ it Xrism}/Resolve和{\ it athena}/X-IFU仪器,以证明这种“讲故事”的标志可能会通过其他温暖的吸收剂和部分覆盖的气体和部分覆盖的气体来免疫光谱污染。
We aim to explore spectral signatures of the predicted multi-ion UFOs in the broadband X-ray spectra of active galactic nuclei (AGNs) by exploiting an accretion disk wind model in the context of a simple magnetohydrodynamic (MHD) framework. We are focused primarily on examining the spectral dependences on a number of key properties; (1) ionizing luminosity ratio $λ_{\rm ion}$, (2) line-of-sight wind density slope $p$, (3) optical/UV-to-X-ray strength $α_{\rm OX}$, (4) inclination $θ$, (5) X-ray photon index $Γ$ and (6) wind density factor $f_D$. With an emphasis on radio-quiet Seyferts in sub-Eddington regime, multi-ion UFO spectra are systematically calculated as a function of these parameters to show that MHD-driven UFOs imprint a unique asymmetric absorption line profile with a pronounced blue tail structure on average. Such a characteristic line signature is generic to the simplified MHD disk-wind models presented in this work due to their specific kinematics and density structure. The properties of these absorption line profiles could be utilized as a diagnostics to distinguish between different wind driving mechanisms or even the specific values of a given MHD wind parameters. We also present high fidelity microcalorimeter simulations in anticipation of the upcoming {\it XRISM}/Resolve and {\it Athena}/X-IFU instruments to demonstrate that such a "tell-tale" sign may be immune to a spectral contamination by the presence of additional warm absorbers and partially covering gas.