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Intermediate-line Emission in AGNs: The Effect of Prescription of the Gas Density

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arxiv 1803.00090 v2 pith:T5QP7GJE submitted 2018-02-28 astro-ph.GA

Intermediate-line Emission in AGNs: The Effect of Prescription of the Gas Density

classification astro-ph.GA
keywords lineregionclouddensitydustagnscloudsemission
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

The requirement of intermediate line component in the recently observed spectra of several AGNs points to possibility of the existence of a physically separate region between broad line region (BLR) and narrow line region (NLR). In this paper we explore the emission from intermediate line region (ILR) by using the photoionization simulations of the gas clouds distributed radially from the AGN center. The gas clouds span distances typical for BLR, ILR and NLR, and the appearance of dust at the sublimation radius is fully taken into account in our model. Single cloud structure is calculated under the assumption of the constant pressure. We show that the slope of the power law cloud density radial profile does not affect the existence of ILR in major types of AGN. We found that the low ionization iron line, Fe~II, appears to be highly sensitive for the presence of dust and therefore becomes potential tracer of dust content in line emitting regions. We show that the use of disk-like cloud density profile computed at the upper part of the accretion disc atmosphere reproduces the observed properties of the line emissivities. In particular, the distance of H${\beta}$ line inferred from our model agrees with that obtained from the reverberation mapping studies in Sy1 galaxy NGC 5548.

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Cited by 2 Pith papers

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  1. Radiation-pressure instability is an artifact of constant-$\alpha$ closure. Implications for AGN disk tensions

    astro-ph.HE 2026-06 unverdicted novelty 5.0

    Requiring thermal stability and single-valuedness in the thin-disk Ṁ-Σ plane produces a viscosity law α(X) with X = P_gas/P_rad that eliminates the radiation-pressure dominated instability while preserving the effecti...

  2. Radiation-pressure instability is an artifact of constant-$\alpha$ closure. Implications for AGN disk tensions

    astro-ph.HE 2026-06 conditional novelty 5.0

    Requiring thin-disk solutions to be thermally stable and single-valued imposes η_x ≡ dlnα/dlnX > 4/7, and a viscosity law α∝X^p with p>4/7 removes the radiation-pressure unstable branch.