Unravelling the physics of multiphase AGN winds through emission line tracers
arXiv:2012.06592 · doi:10.1093/mnras/stab556
Abstract
Observations of emission lines in Active Galactic Nuclei (AGN) often find fast (~1000 km s^-1) outflows extending to kiloparsec scales, seen in ionised, neutral atomic and molecular gas. In this work we present radiative transfer calculations of emission lines in hydrodynamic simulations of AGN outflows driven by a hot wind bubble, including non-equilibrium chemistry, to explore how these lines trace the physical properties of the multiphase outflow. We find that the hot bubble compresses the line-emitting gas, resulting in higher pressures than in the ambient ISM or that would be produced by the AGN radiation pressure. This implies that observed emission line ratios such as [OIV] 25 m / [NeII] 12 m , [NeV] 14 m / [NeII] 12 m and [NIII] 57 m / [NII] 122 m constrain the presence of the bubble and hence the outflow driving mechanism. However, the line-emitting gas is under-pressurised compared to the hot bubble itself, and much of the line emission arises from gas that is out of pressure, thermal and/or chemical equilibrium. Our results thus suggest that assuming equilibrium conditions, as commonly done in AGN line emission models, is not justified if a hot wind bubble is present. We also find that >50 per cent of the mass outflow rate, momentum flux and kinetic energy flux of the outflow are traced by lines such as [NII] 122 m and [NeIII] 15 m (produced in the 10^4 K phase) and [CII] 158 m (produced in the transition from 10^4 K to 100 K).
19 pages, 16 figures (including appendix). Accepted for publication in MNRAS; minor changes relative to previous version
References in corpus (24)
- The Host Galaxies and Classification of Active Galactic Nuclei
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Astrophysics Source Code Library
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- The Circumgalactic Medium
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Massive molecular outflows and negative feedback in ULIRGs observed by Herschel-PACS
- Kiloparsec-scale outflows are prevalent among luminous AGN: outflows and feedback in the context of the overall AGN population
- The dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- The Launching of Cold Clouds by Galaxy Outflows I: Hydrodynamic Interactions with Radiative Cooling
- Very extended cold gas, star formation and outflows in the halo of a bright QSO at z>6
- Molecular outflows in local ULIRGs: energetics from multi-transition OH analysis
- Unifying the micro and macro properties of AGN feeding and feedback
- Molecular outflows in local galaxies: Method comparison and a role of intermittent AGN driving
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- Hydrodynamical Coupling of Mass and Momentum in Multiphase Galactic Winds
- The Near-Infrared Broad Emission Line Region of Active Galactic Nuclei -- I. The Observations
- High resolution observations of HCN and HCO+ J=3-2 in the disk and outflow of Mrk231 -Detection of vibrationally excited HCN in the warped nucleus
- BAT AGN Spectroscopic Survey - IV: Near-Infrared Coronal Lines, Hidden Broad Lines, and Correlation with Hard X-ray Emission
- Non-equilibrium chemistry and cooling in the diffuse interstellar medium - II. Shielded gas
- Fast cold gas in hot AGN outflows
- An accreting supermassive black hole irradiating molecular gas in NGC 2110
- Radiation Pressure Confinement -- III. The origin of the broad ionization distribution in AGN outflows
- Evidence for Radiation Pressure Compression in the X-ray Narrow Line Region of Seyfert galaxies
Cited by in corpus (6)
- The AGNIFS survey: spatially resolved observations of hot molecular and ionised outflows in nearby active galaxies
- Determining AGN luminosity histories using present-day outflow properties: a neural-network based approach
- Hydrodynamic simulations of the Disk of Gas Around Supermassive black holes (HDGAS) -I; Molecular Gas Dynamics
- Uncovering the absorbed atomic Universe with the [OI]63um line
- The imprint of AGN-driven outflows on the CGM: the case of Lyα nebulae around high-z quasars
- Exploring supermassive black hole physics and galaxy quenching across halo mass in FIRE cosmological zoom simulations