AGN Feedback: The impact of galactic-scale radio jets on the interstellar medium in starbursting obscured AGN
M. Polletta, C. J. Lonsdale, P. Pallavi, G. Vietri, A. E. Kimball, P. Franzetti, C. J. Lonsdale
astro-ph.GA
Submitted: 2026-06-30
Comments: This article is part of a Special issue entitled: SHARP Science Book (10 pages, 8 figures)
Journal ref: 2026, New Astronomy, Volume 127, id.102584
DOI: 10.1016/j.newast.2026.102584
License: http://creativecommons.org/licenses/by/4.0/
The gist: A highly star-forming galaxy at z 2 hosting an obscured, luminous active galactic nucleus (AGN) and a relativistic radio jet sets the stage for a cosmic crime scene.
Terminology
Abstract
A highly star-forming galaxy at z 2 hosting an obscured, luminous active galactic nucleus (AGN) and a relativistic radio jet sets the stage for a cosmic crime scene. The victim is star formation, the suspect is AGN feedback. These systems offer a rare opportunity to catch this process in the act. We propose SHARP@ELT integral-field spectroscopic observations of heavily obscured, luminous AGN with resolved radio emission to witness the onset of feedback and its impact on the host interstellar medium (ISM). Such objects trace a short-lived (< 10 5 yr) evolutionary phase in which a recent starburst, newly triggered radio jets, and a deeply embedded AGN coexist. In this phase, feedback is expected to suppress star formation while clearing the dusty nuclear regions. Using SHARP/VESPER, we will derive spatially resolved maps of stellar ages, star formation rate density, gas density, and ionization state, alongside the kinematics of stars and ionized gas. By directly comparing these properties with the radio structures, we will quantify the effects of both jet-driven and radiative feedback on the ISM. Our sample consists of eleven luminous, obscured AGN at 1.5 < z < 2.5 with resolved radio emission on scales of 1-15 kpc. Exploiting the VESPER multi-Integral Field Selector capability, we will obtain resolved continuum and emission-line maps for at least 110 galaxies at cosmic noon, enabling a comprehensive characterization of their environment, multiphase ISM, and nuclear activity within 55 h of integration time. SHARP will thus reveal AGN feedback at the epoch when it is most effective, providing a decisive step toward understanding its role in galaxy evolution.
Sources
- QSOFEED: The relationship between star formation and AGN Feedback
- CIGALE: a python Code Investigating GALaxy Emission
- The MURALES survey. V. Jet-induced star formation in 3C 277.3 (Coma A)
- CLASH: Precise New Constraints on the Mass Profile of Abell 2261
- Bubbles and outflows: the novel JWST/NIRSpec view of the z=1.59 obscured quasar XID2028
- Simba: Cosmological Simulations with Black Hole Growth and Feedback
- GATOS: missing molecular gas in the outflow of NGC5728 revealed by JWST
- Massive Star Formation in Galaxies: Radiative transfer models of the UV to mm emission of starburst galaxies
- Observational Evidence of AGN Feedback
- The black hole masses of extremely luminous radio-WISE selected galaxies
- The Galaxy Activity, Torus, and Outflow Survey (GATOS). V: Unveiling PAH survival and resilience in the circumnuclear regions of AGN with JWST
- Evidence for Large-scale, Rapid Gas Inflows in z~2 Star-forming Disks
- Star Formation Histories and Stellar Dynamics in the Central Galaxies of RX J0820.9+0752, A1835, and PKS 0745-191
- AGN outflows and feedback twenty years on
- Observational Tests of Active Galactic Nuclei Feedback: An Overview of Approaches and Interpretation
- Solving the cooling flow problem with combined jet-wind AGN feedback
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- Winds as the origin of radio emission in $z=2.5$ radio-quiet extremely red quasars
- Connecting outflows with radio emission in active galactic nuclei at cosmic noon
- Prevalence of radio jets associated with galactic outflows and feedback from quasars
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