English

Exploring the AGN-ram pressure stripping connection in local clusters

Astrophysics of Galaxies 2022-03-30 v2

Abstract

Ram-pressure stripping by the intracluster medium (ICM) is one of the most advocated mechanisms that affect the properties of cluster galaxies. A recent study based on a small sample has found that many galaxies showing strong signatures of ram-pressure stripping also possess an active galactic nucleus (AGN), suggesting a possible correlation between the two phenomena. This result has not been confirmed by a subsequent study. Building upon previous findings, here we combine MUSE observations conducted within the GASP program and a general survey of the literature to robustly measure the AGN fraction in cluster's ram pressure stripped galaxies using BPT emission line diagrams. Considering a sample of 115 ram pressure stripped galaxies with stellar masses 109M\geq 10^9 \, M_{\odot}, we find an AGN fraction of 27%\sim27\%. This fraction strongly depends on stellar mass: it raises to 51% when only ram-pressure stripped galaxies of masses M1010MM_* \geq 10^{10} \, M_{\odot} are considered. We then investigate whether the AGN incidence is in excess in ram pressure stripped galaxies compared to non-stripped galaxies, using as comparison a sample of non-cluster galaxies observed by the survey MaNGA. Considering mass-matched samples, we find that the incidence of AGN activity is significantly higher (at a confidence level >99.95%>99.95\%) when ram-pressure stripping is on act, supporting the hypothesis of an AGN-ram pressure connection.

Keywords

Cite

@article{arxiv.2111.02538,
  title  = {Exploring the AGN-ram pressure stripping connection in local clusters},
  author = {Giorgia Peluso and Benedetta Vulcani and Bianca M. Poggianti and Alessia Moretti and Mario Radovich and Rory Smith and Yara L. Jaffé and Jacob Crossett and Marco Gullieuszik and Jacopo Fritz and Alessandro Ignesti},
  journal= {arXiv preprint arXiv:2111.02538},
  year   = {2022}
}

Comments

18 pages, 5 figures, table3 and table4 available in machine-readable format. Accepted for publication on ApJ on 03/11/2021

R2 v1 2026-06-24T07:25:17.610Z