A hybrid active galactic nucleus feedback model with spinning black holes, winds and jets

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Huško, Filip, Lacey, Cedric G., Schaye, Joop, Schaller, Matthieu, Chaikin, Evgenii, Ploeckinger, Sylvia, Llambay, Alejandro Benítez, Richings, Alexander J., Trayford, James W.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866910024239939584
author Huško, Filip
Lacey, Cedric G.
Schaye, Joop
Schaller, Matthieu
Chaikin, Evgenii
Ploeckinger, Sylvia
Llambay, Alejandro Benítez
Richings, Alexander J.
Trayford, James W.
author_facet Huško, Filip
Lacey, Cedric G.
Schaye, Joop
Schaller, Matthieu
Chaikin, Evgenii
Ploeckinger, Sylvia
Llambay, Alejandro Benítez
Richings, Alexander J.
Trayford, James W.
contents We present a hybrid active galactic nucleus (AGN) feedback model that features three accretion disc states (the thick, thin, and slim discs at low, moderate, and super-Eddington accretion rates, respectively), and two feedback modes: thermal isotropic and kinetic jets. The model includes black hole (BH) spin evolution due to gas accretion, BH mergers, jet spindown, and Lense-Thirring torques. The BH spin determines the jet directions and affects the feedback efficiencies. The model is implemented in the SWIFT code and coupled with the COLIBRE galaxy formation model. We present the first results from hybrid AGN feedback simulations run as part of the COLIBRE suite, focusing on the impact of new parameters and calibration efforts. Using the new hybrid AGN feedback model, we find that AGN feedback affects not just massive galaxies, but all galaxies down to $M_*\approx10^8$ $\mathrm{M}_\odot$. BH spins are predicted to be near-maximal for intermediate-mass BHs ($M_\mathrm{BH}\in[10^6,10^8]$ $\mathrm{M}_\odot$), and lower for other BH masses. These trends are in good agreement with observations. The intergalactic medium is hotter and impacted on larger scales in the hybrid AGN feedback simulations compared to those using purely thermal feedback. In the hybrid AGN simulations, we predict that half of the cumulative injected AGN energy is in thermal and the other half in jet form, broadly independent of BH mass and redshift. Jet feedback is important at all redshifts and dominates over thermal feedback at $z<0.5$ and $z>1.5$, but only mildly.
format Preprint
id arxiv_https___arxiv_org_abs_2509_05179
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A hybrid active galactic nucleus feedback model with spinning black holes, winds and jets
Huško, Filip
Lacey, Cedric G.
Schaye, Joop
Schaller, Matthieu
Chaikin, Evgenii
Ploeckinger, Sylvia
Llambay, Alejandro Benítez
Richings, Alexander J.
Trayford, James W.
Astrophysics of Galaxies
We present a hybrid active galactic nucleus (AGN) feedback model that features three accretion disc states (the thick, thin, and slim discs at low, moderate, and super-Eddington accretion rates, respectively), and two feedback modes: thermal isotropic and kinetic jets. The model includes black hole (BH) spin evolution due to gas accretion, BH mergers, jet spindown, and Lense-Thirring torques. The BH spin determines the jet directions and affects the feedback efficiencies. The model is implemented in the SWIFT code and coupled with the COLIBRE galaxy formation model. We present the first results from hybrid AGN feedback simulations run as part of the COLIBRE suite, focusing on the impact of new parameters and calibration efforts. Using the new hybrid AGN feedback model, we find that AGN feedback affects not just massive galaxies, but all galaxies down to $M_*\approx10^8$ $\mathrm{M}_\odot$. BH spins are predicted to be near-maximal for intermediate-mass BHs ($M_\mathrm{BH}\in[10^6,10^8]$ $\mathrm{M}_\odot$), and lower for other BH masses. These trends are in good agreement with observations. The intergalactic medium is hotter and impacted on larger scales in the hybrid AGN feedback simulations compared to those using purely thermal feedback. In the hybrid AGN simulations, we predict that half of the cumulative injected AGN energy is in thermal and the other half in jet form, broadly independent of BH mass and redshift. Jet feedback is important at all redshifts and dominates over thermal feedback at $z<0.5$ and $z>1.5$, but only mildly.
title A hybrid active galactic nucleus feedback model with spinning black holes, winds and jets
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.05179