Mapping AGN winds: a connection between radio-mode AGN and the AGN feedback cycle
Marco Alb\'an, Dominika Wylezalek, Julia M. Comerford, Jenny E., Greene, and Rogemar A. Riffel

TL;DR
This study uses integral field spectroscopy to analyze ionized gas kinematics in a large, diverse sample of AGN, revealing how different selection methods trace various AGN populations and their evolutionary stages.
Contribution
It provides a comprehensive kinematic comparison of AGN selected by multiple techniques, highlighting differences in outflow signatures and evolutionary implications.
Findings
Radio-selected AGN show enhanced ionized gas line widths at all radii.
Optical and radio AGN populations exhibit similar kinematic profiles.
Non-AGN galaxies can display remnant outflow signatures similar to AGN.
Abstract
We present a kinematic analysis based on the large Integral Field Spectroscopy (IFS) dataset of SDSS-IV MaNGA (10.000 galaxies). We have compiled a diverse sample of 594 unique Active Galactic Nuclei (AGN), identified through a variety of independent selection techniques, encompassing radio (1.4 GHz) observations, optical emission line diagnostics (BPT), broad Balmer emission lines, mid-infrared colors, and hard X-ray emission. We investigate how ionized gas kinematics behave in these different AGN populations through stacked radial profiles of the [OIII]~5007 emission-line width across each AGN population. We contrast AGN populations against each other (and non-AGN galaxies) by matching samples by stellar mass, [OIII]~5007 luminosity, morphology, and redshift. We find similar kinematics between AGN selected by BPT diagnostics compared to broad-line selected AGN. We also identify a…
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Taxonomy
TopicsIonosphere and magnetosphere dynamics · Solar and Space Plasma Dynamics · Geophysics and Gravity Measurements
