On the Mass Loading of AGN-Driven Outflows in Elliptical Galaxies and Clusters
arXiv:2103.06505 · doi:10.3847/1538-4357/ac2ede
Abstract
Outflows driven by active galactic nuclei (AGN) are an important channel for accreting supermassive black holes (SMBHs) to interact with their host galaxies and clusters. Properties of the outflows are however poorly constrained due to the lack of kinetically resolved data of the hot plasma that permeates the circumgalactic and intracluster space. In this work, we use a single parameter, outflow-to-accretion mass-loading factor , to characterize the outflows that mediate the interaction between SMBHs and their hosts. By modeling both M87 and Perseus, and comparing the simulated thermal profiles with the X-ray observations of these two systems, we demonstrate that can be constrained between . This parameter corresponds to a bulk flow speed between at around 1 kpc, and a thermalized outflow temperature between . Our results indicate that the dominant outflow speeds in giant elliptical galaxies and clusters are much lower than in the close vicinity of the SMBH, signaling an efficient coupling with and deceleration by the surrounding medium on length scales below 1 kpc. Consequently, AGNs may be efficient at launching outflows times more massive than previously uncovered by measurements of cold, obscuring material. We also examine the mass and velocity distribution of the cold gas, which ultimately forms a rotationally supported disk in simulated clusters. The rarity of such disks in observations indicates that further investigations are needed to understand the evolution of the cold gas after it forms.
23 pages, 12 figures, 1 table, accepted for publication in ApJ
References in corpus (21)
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- Intracluster Medium Entropy Profiles for a Chandra Archival Sample of Galaxy Clusters
- An Entropy Threshold for Strong H-alpha and Radio Emission in the Cores of Galaxy Clusters
- Star formation in a galactic outflow
- Numerical Simulation of Hot Accretion Flows (III): Revisiting wind properties using trajectory approach
- Detection of large-scale X-ray bubbles in the Milky Way halo
- Cold molecular gas in the Perseus cluster core - Association with X-ray cavity, Halpha filaments and cooling flow -
- Measuring the non-thermal pressure in early type galaxy atmospheres: A comparison of X-ray and optical potential profiles in M87 and NGC1399
- On the deceleration of FRI jets: mass loading by stellar-winds
- A uniform metallicity in the outskirts of massive, nearby galaxy clusters
- Origin and Dynamical Support of Ionized Gas in Galaxy Bulges
- OVI Observations of Galaxy Clusters: Evidence for Modest Cooling Flows
- Simulations of MHD Instabilities in Intracluster Medium Including Anisotropic Thermal Conduction
- AGN Jet Mass Loading and Truncation by Stellar Winds
- Numerical simulation of hot accretion flows (IV): effects of black hole spin and magnetic field strength on the wind and the comparison between wind and jet properties
- Transition of BH feeding from the quiescent regime into star-forming cold disk regime
- The Sunyaev-Zel'dovich effect of simulated jet-inflated bubbles in clusters
- Large-scale dynamics of winds originated from black hole accretion flows: (I) Hydrodynamics
- The SZ effect from cluster cavities
- Dynamics and Morphology of Cold Gas in Fast, Radiatively Cooling Outflows: Constraining AGN Energetics with Horseshoes
- Thermal and non-thermal Sunyaev-Zel'dovich effect in the cavities of the galaxy cluster MS 0735.6+7421: the role of the thermal density in the cavity
Cited by in corpus (6)
- Kiloparsec-scale AGN Outflows and Feedback in Merger-Free Galaxies
- Supermassive Black Hole Winds in X-rays -- SUBWAYS. III. A population study on ultra-fast outflows
- Signature of Supersonic Turbulence in Galaxy Clusters Revealed by AGN-driven H Filaments
- Exploring Spatially-Resolved Metallicities, Dynamics and Outflows in Low-Mass Galaxies at
- Anatomy of galactic star formation history: Roles of different modes of gas accretion, feedback, and recycling
- The interplay between AGN feedback and precipitation of the intracluster medium in simulations of galaxy groups and clusters