Impact of Active Galactic Nuclei Feedback on the Dynamics of Gas: A Review across Diverse Environments

Author:

Raouf Mojtaba12ORCID,Purabbas Mohammad Hossein23,Fazel Hesar Fatemeh14ORCID

Affiliation:

1. Leiden Observatory, Leiden University, P.O. Box 9513, 2300 RA Leiden, The Netherlands

2. School of Astronomy, Institute for Research in Fundamental Sciences (IPM), Tehran 19538-33511, Iran

3. Department of Physics, Faculty of Sciences, University of Birjand, Shahid Aviny Street, Birjand 97174-34765, Iran

4. Eurospacehub Academy & LUNEX, ESA BIC, 2201 BB Noordwijk, The Netherlands

Abstract

This review examines the relationship between black hole activity and kinematic gas–star misalignment in brightest group galaxies (BGGs) with different merger rates. The formation history of galaxy groups is assessed through “age-dating” as an indicator of distinct major mergers involving the BGGs. BGGs within groups characterized by a higher frequency of major mergers are more likely to host active SMBHs. A consistent correlation is identified between the level of black hole activity, as indicated by the 1.4 GHz and 325 MHz radio emissions, and the degree of kinematic misalignment between the gas and stellar components in BGGs. In dynamically fossil groups, where black hole accretion rate is relatively (∼1 dex) lower due to the lack of recent (≤1 Gyr) major mergers, there is reduced (∼30%) misalignment between the gas and stellar components of BGGs compared to non-fossil groups. Additionally, this study reveals that BGGs in non-fossil groups show higher levels of star formation rate and increased occurrence of mergers, contributing to observed color differences. Exploring the properties and dynamics of the gas disk influenced by mechanical AGN feedback through hydrodynamic simulations suggests that AGN wind-induced effects further lead to the persistent gas misalignment in the disk around the supermassive black hole.

Publisher

MDPI AG

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