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首页> 外文期刊>The Astrophysical journal >X-RAY REFLECTION FROM INHOMOGENEOUS ACCRETION DISKS. II. EMISSION-LINE VARIABILITY AND IMPLICATIONS FOR REVERBERATION MAPPING
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X-RAY REFLECTION FROM INHOMOGENEOUS ACCRETION DISKS. II. EMISSION-LINE VARIABILITY AND IMPLICATIONS FOR REVERBERATION MAPPING

机译:来自非均质吸积盘的X射线反射。二。发射线的变异性和重映射的含义

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摘要

One of the principal scientific objectives of the upcoming Constellation-X mission is to attempt to map the inner regions of accretion disks around black holes in Seyfert galaxies by reverberation mapping of the Fe Kα fluorescence line. This area of the disk is likely to be radiation pressure dominated and subject to various dynamical instabilities. Here, we show that density inhomogeneities in the disk atmosphere resulting from the photon bubble instability (PBI) can cause rapid changes in the X-ray reflection features, even when the illuminating flux is constant. Using a simulation of the development of the PBI, we find that for the disk parameters chosen, the Fe Kα and O VIII Lyα lines vary on timescales as short as a few hundredths of an orbital period. In response to the changes in accretion disk structure, the Fe Kα equivalent width (EW) shows variations as large as ~ 100 eV. The magnitude and direction (positive or negative) of the changes depends on the ionization state of the atmosphere. The largest changes are found when the disk is moderately ionized. The O VIII EW varies by tens of eV and exhibits plenty of rapid, low-amplitude changes. This effect provides a natural explanation for some observed instances of short-timescale Fe Kα variability that was uncorrelated with the continuum (e.g., Mrk 841). New predictions for Fe Kα reverberation mapping should be made that include the effects of this accretion disk-driven line variability and a variable ionization state. Reflection spectra averaged over the evolution of the instability are well fitted by constant-density models in the 2-10 keV region.
机译:即将进行的Constellation-X任务的主要科学目标之一是试图通过FeKα荧光线的混响图来绘制塞弗特星系中黑洞周围吸积盘的内部区域。磁盘的该区域很可能是辐射压力主导的,并且受到各种动态不稳定的影响。在这里,我们表明,即使当光通量恒定时,由光子气泡不稳定性(PBI)引起的磁盘大气中的密度不均匀也会导致X射线反射特征快速变化。通过模拟PBI的发展,我们发现,对于所选的磁盘参数,FeKα和O VIIILyα线在短至百分之几百个轨道周期的时间尺度上变化。响应于吸积盘结构的变化,FeKα当量宽度(EW)的变化幅度高达〜100 eV。变化的大小和方向(正或负)取决于大气的电离状态。当磁盘适度电离时,发现最大的变化。 O VIII EW的变化幅度为数十eV,并且表现出大量的快速,低振幅变化。对于某些观察到的与连续谱无关的短时尺度FeKα变异实例,此效应提供了自然的解释(例如Mrk 841)。 FeKα混响映射的新预测应该做出,包括该吸积盘驱动的线的可变性和可变的电离状态的影响。在2-10 keV区域内,通过恒定密度模型可以很好地拟合不稳定性演化过程中的平均反射光谱。

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