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ACTIVE GALACTIC NUCLEUS OBSCURATION FROM WINDS: FROM DUSTY INFRARED-DRIVEN TO WARM AND X-RAY PHOTOIONIZED

机译:活动星系核遮蔽不受风暴:从DUsTY红外驱动以温暖和X射线光电离

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摘要

We present calculations of AGN winds at ~parsec scales, along with the associated obscuration. We take into account the pressure of infrared radiation on dust grains and the interaction of X-rays from a central black hole with hot and cold plasma. Infrared radiation (IR) is incorporated in radiation-hydrodynamic simulations adopting the flux-limited diffusion approximation. We find that in the range of X-ray luminosities L=0.05 – 0.6Ledd, the Compton-thick part of the flow (aka torus) has an opening angle of approximately 72° – 75° regardless of the luminosity. At L ≳ 0.1 the outflowing dusty wind provides the obscuration with IR pressure playing a major role. The global flow consists of two phases: the cold flow at inclinations θ ≳ 70° and a hot, ionized wind of lower density at lower inclinations. The dynamical pressure of the hot wind is important in shaping the denser IR supported flow. At luminosities ≤0.1Ledd episodes of outflow are followed by extended periods when the wind switches to slow accretion.
机译:我们介绍了〜parsec尺度的AGN风的计算以及相关的遮挡。我们考虑了红外辐射对尘埃颗粒的压力以及来自中心黑洞的X射线与冷热等离子体的相互作用。采用通量限制的扩散近似将红外辐射(IR)合并到辐射流体动力学模拟中。我们发现,在X射线发光度L = 0.05 – 0.6Ledd的范围内,流体的康普顿厚部分(又名环面)的开口角约为72°– 75°,而与发光度无关。当L≳0.1时,流出的尘埃风会起到遮盖作用,红外压力起主要作用。整体流动由两个阶段组成:倾斜度θ≳70°时的冷流和较低倾斜度时密度较低的热电离风。热风的动压对于塑造更密集的红外支撑流至关重要。在光度≤0.1时,会导致出风的发作,随后当风切换到较慢的吸积时会延长一段时间。

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  • 作者

    A. Dorodnitsyn; T. Kallman;

  • 作者单位
  • 年(卷),期 -1(761),1
  • 年度 -1
  • 页码 70
  • 总页数 26
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