A multi-wavelength approach of AGN feedback in LINERs: The case of NGC 4438
M. Puig-Subir\`a, J. Mold\'on, I. M\'arquez, J. Masegosa, O. Gonz\'alez-Mart\'in, L. Hermosa Mu\~noz, S. Cazzoli, D. Williams-Baldwin

TL;DR
This study investigates the multi-phase outflows in LINER NGC 4438 using high-resolution radio, optical, and X-ray data to understand the AGN feedback mechanisms and their physical origins.
Contribution
It provides the first detailed spatially resolved energetic model distinguishing between the AGN and radio bubble, revealing the jet-mode feedback in NGC 4438.
Findings
Radio structures closely match ionised gas bubbles.
The radio bubble's kinetic power exceeds ionised outflow power by over three orders of magnitude.
NGC 4438 exhibits jet-mode feedback impacting the dense interstellar medium.
Abstract
The presence of multi-phase outflows in low ionisation nuclear emission-line regions (LINERs) has been confirmed to be frequent, but the mechanisms that launch them are still under study. We aim to explore the connections between the ionised gas outflow, radio continuum structures and X-ray emission detected in the LINER NGC4438. We analyse L, C and X-band images (from 1.4 to 12 GHz) of the LINER NGC4438, combining high-resolution data from enhanced Multi Element Radio Linked Interferometer Network (e-MERLIN) and Karl G Jansky Very Large Array (VLA). We produce radio flux, spectral index maps, and an energetic model that allows us to characterise the source. We incorporate optical integral field spectroscopy (IFS) data (GTC/MEGARA) and Chandra X-ray data, with comparable resolution, to better trace the outflow, the AGN and their potential connection. We present new L, C, and X-band…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Astrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena
