Effects of Varied Cosmic Ray Feedback from AGN on Massive Galaxy Properties

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Goyal, Charvi, Ponnada, Sam B., Hopkins, Philip F., Wellons, Sarah, Benavides, Jose A., Su, Kung-Yi
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866913023406374912
author Goyal, Charvi
Ponnada, Sam B.
Hopkins, Philip F.
Wellons, Sarah
Benavides, Jose A.
Su, Kung-Yi
author_facet Goyal, Charvi
Ponnada, Sam B.
Hopkins, Philip F.
Wellons, Sarah
Benavides, Jose A.
Su, Kung-Yi
contents Active galactic nuclei (AGN) provide energetic feedback necessary to `turn off' star formation in high-mass galaxies (M$_{\rm halo} \geq $ 10$^{12.5}$ M$_{\odot}$, $10.4 \leq \log(\frac{M_*}{M_\odot}) \leq 11$) as observed. Cosmic rays (CRs) have been proposed as a promising channel of AGN feedback, but the nature of CR feedback from AGN remains uncertain. We analyze a set of high-resolution simulations of massive galaxies from the Feedback in Realistic Environments (FIRE-3) project including multi-channel AGN feedback, explicitly evolving kinetic/mechanical, radiative, and spectrally-resolved CRs from the central black hole. Specifically, we explore different CR feedback and transport assumptions, calibrated to Milky Way local ISM constraints, and compare them to observed galaxy scaling relations. We find that all parameterizations explored self-regulate within agreement with observed galaxy scaling relations, demonstrating that CR injection efficiencies varied by $\sim$1.5 dex and locally-variable transport produce quenched galaxies with reasonable bulk properties; however, they feature orders-of-magnitude variant circumgalactic medium (CGM) gas properties. Our results indicate that multi-wavelength synthetic observations probing these varied halo properties from larger simulated samples in conjunction with observational comparisons may place novel constraints on how AGN physically quench star formation in massive galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11062
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effects of Varied Cosmic Ray Feedback from AGN on Massive Galaxy Properties
Goyal, Charvi
Ponnada, Sam B.
Hopkins, Philip F.
Wellons, Sarah
Benavides, Jose A.
Su, Kung-Yi
Astrophysics of Galaxies
High Energy Astrophysical Phenomena
Active galactic nuclei (AGN) provide energetic feedback necessary to `turn off' star formation in high-mass galaxies (M$_{\rm halo} \geq $ 10$^{12.5}$ M$_{\odot}$, $10.4 \leq \log(\frac{M_*}{M_\odot}) \leq 11$) as observed. Cosmic rays (CRs) have been proposed as a promising channel of AGN feedback, but the nature of CR feedback from AGN remains uncertain. We analyze a set of high-resolution simulations of massive galaxies from the Feedback in Realistic Environments (FIRE-3) project including multi-channel AGN feedback, explicitly evolving kinetic/mechanical, radiative, and spectrally-resolved CRs from the central black hole. Specifically, we explore different CR feedback and transport assumptions, calibrated to Milky Way local ISM constraints, and compare them to observed galaxy scaling relations. We find that all parameterizations explored self-regulate within agreement with observed galaxy scaling relations, demonstrating that CR injection efficiencies varied by $\sim$1.5 dex and locally-variable transport produce quenched galaxies with reasonable bulk properties; however, they feature orders-of-magnitude variant circumgalactic medium (CGM) gas properties. Our results indicate that multi-wavelength synthetic observations probing these varied halo properties from larger simulated samples in conjunction with observational comparisons may place novel constraints on how AGN physically quench star formation in massive galaxies.
title Effects of Varied Cosmic Ray Feedback from AGN on Massive Galaxy Properties
topic Astrophysics of Galaxies
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2512.11062