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AGN Obscuration Through Dusty Infrared Dominated Flows. II. Multidimensional, Radiation-Hydrodynamics Modeling

机译:通过尘土飞扬的红外支配流掩盖AGN。二。多维辐射流体动力学建模

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摘要

We explore a detailed model in which the active galactic nucleus (AGN) obscuration results from the extinction of AGN radiation in a global ow driven by the pressure of infrared radiation on dust grains. We assume that external illumination by UV and soft X-rays of the dusty gas located at approximately 1pc away from the supermassive black hole is followed by a conversion of such radiation into IR. Using 2.5D, time-dependent radiation hydrodynamics simulations in a ux-limited di usion approximation we nd that the external illumination can support a geometrically thick obscuration via out ows driven by infrared radiation pressure in AGN with luminosities greater than 0:05 L(sub edd) and Compton optical depth, Tau(sub T) approx > & 1.
机译:我们探索了一个详细的模型,其中主动银河核(AGN)的遮盖是由粉尘颗粒上的红外辐射压力驱动的全球流动中AGN辐射的灭绝导致的。我们假设,位于距超大质量黑洞约1pc处的尘埃气体的紫外线和软X射线的外部照明之后,是将此类辐射转换为IR。使用以ux为限的二维近似的2.5D,随时间变化的辐射流体动力学仿真,我们发现外部照明可以通过AGN中红外辐射压力驱动的光通过大于0:05 L(sub edd)和康普顿光学深度Tau(sub T)大约>&1。

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