Simulations of AGN Driven Galactic Outflow Morphology and Content
arXiv:2201.08360 · doi:10.3847/1538-3881/ac4d23
Abstract
Using a series of 3D relativistic hydrodynamical simulations of active galactic nuclei (AGN) we investigate how AGN power, a clumpy ISM structure, and AGN jet angle with respect to the galactic disk affect the morphology and content of the resulting galactic outflow. For low power AGN across three orders of magnitude of AGN luminosities ( erg s) our simulations did not show significant changes to either the morphology or total mass of the outflow. Changing the angle of the AGN jet with respect to the galaxy did show small changes in the total outflow mass of a factor of 2-3. Jets perpendicular to the galactic disk were created hot single phase outflows, while jets close to parallel with the disk created the outflows were multi-phase with equal parts warm and hot, and significant cold gas. Overall The final morphology of low power AGN outflows depends primarily on how the jet impacts and interacts with large, dense clouds in the clumpy ISM. These clouds can disrupt, deflect, split, or suppress the jet preventing it from leaving the galactic disk as a coherent structure. But for simulations with AGN luminosities erg s the ISM played a minor role in determining the morphology of the outflow with an undisrupted jet leaving the disk. The final morphology of AGN outflows is different for low power AGNs vs. high power AGNs with the final morphology of low power AGN outflows dependent on the ISM structure within the first kpc surrounding the AGN.
23 pages, 12 figures, Accepted to ApJ
References in corpus (33)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- Athena: A New Code for Astrophysical MHD
- AGN Dusty Tori: I. Handling of Clumpy Media
- Kiloparsec-scale outflows are prevalent among luminous AGN: outflows and feedback in the context of the overall AGN population
- Hot and cold gas accretion and feedback in radio-loud active galaxies
- Revisiting the Fanaroff-Riley dichotomy and radio-galaxy morphology with the LOFAR Two-Metre Sky Survey (LoTSS)
- The Dynamic Evolution of Young Extragalactic Radio Sources
- Interactions of a Light Hypersonic Jet with a Non-Uniform Interstellar Medium
- The radio structure of radio-quiet quasars
- Numerical modelling of the lobes of radio galaxies in cluster environments II: Magnetic field configuration and observability
- The Energetics and Lifetimes of Local Radio Active Galactic Nuclei
- Powering galactic super-winds with small-scale AGN winds
- A representative survey of the dynamics and energetics of FRII radio galaxies
- The Close AGN Reference Survey (CARS). A massive multi-phase outflow impacting the edge-on galaxy HE1353-1917
- Making Fanaroff-Riley I radio sources. Numerical Hydrodynamic 3D Simulations of Low Power Jets
- Asymmetries in Extragalactic Double Radio Sources: Clues from 3D Simulations of Jet - Disc Interaction
- Jet-ISM Interaction in the Radio Galaxy 3C293: Jet-driven Shocks Heat ISM to Power X-ray and Molecular H2 emission
- AGN feedback in a galaxy merger: Multi-phase, galaxy-scale outflows including a fast molecular gas blob ~6 kpc away from IRAS F08572+3915
- Jet-driven galaxy-scale gas outflows in the hyper-luminous quasar 3C273
- Making Faranoff-Riley I radio sources II. The effects of jet magnetization
- Dynamics of relativistic radio jets in asymmetric environments
- High-resolution VLA Imaging of Obscured Quasars: Young Radio Jets Caught in a Dense ISM
- Numerical modelling of the lobes of radio galaxies in cluster environments -- IV. Remnant radio galaxies
- Accretion disk versus jet orientation in HO megamaser galaxies
- Unraveling the complex structure of AGN-driven outflows: V. Integral-field spectroscopy of 40 moderate-luminosity Type-2 AGNs
- The complex multi-component outflow of the Seyfert galaxy NGC 7130
- The X-ray emission in young radio AGNs
- Gemini IFU, VLA and HST observations of the OH Megamaser galaxy IRASF23199+0123: the hidden monster and its outflow
- Interaction of radio jets with clouds in the ambient medium: Numerical simulations
- Extended X-ray emission around FR II radio galaxies: hotspots, lobes and galaxy clusters
- Testing for Shock-Heated X-ray Gas Around Compact Steep Spectrum Radio Galaxies
- Molecular Gas Heating and Modified Dust Properties in Active Galaxies: Growing Black Holes or Tidal Shocks?
- Searching for Nuclear Obscuration in the Infrared Spectra of Nearby FR I Radio Galaxies
Cited by in corpus (3)
- The SAMI Galaxy Survey: Physical drivers of stellar-gas kinematic misalignments in the nearby Universe
- CO Emission Delineating the Interface between the Milky Way Nuclear Wind Cavity and the Gaseous Disk
- Revealing the Gas Recycling in the Circumgalactic Medium (CGM) Utilizing a Luminous Ly Nebula Around a Type-II Quasar at z=2.6 with the Keck Cosmic Web Imager (KCWI)