The Curious Case of Centaurus A II: On the Subject of the Quenched satellites

The satellite system of Centaurus A presents a curious cosmological puzzle: while the global population is consistent with theoretical expectations, its inner regions (d<150 kpc) exhibit a deficit of luminous satellite galaxies. Using the Galacticus semi-analytic model applied to high-resolution N-body merger trees, we investigate potential quenching mechanisms to explain this trend. Our fiducial models, calibrated to the Milky Way, reproduce the overall Cen A population but overpredict the number of bright inner-halo satellites by a factor of 4 +- 1 at Mv < -15.8. We find that this is not due to statistical variance. Instead, the spatial coincidence of this deficiency with Cen A’s massive, kiloparsec-scale radio lobes suggests a powerful environmental driver. We explore a range of physical scenarios, including enhanced tidal disruption, reionization quenching, and suppressed accretion into halos from the surrounding intergalactic medium. Our results indicate that AGN-driven thermal feedback at z < 5 can significantly suppress star formation in satellites, effectively truncating the bright end of the inner luminosity function. Our work suggests that the “Curious Case of Centaurus A” may provide evidence of AGN feedback within the host galaxy that regulates the survival and evolution of its dwarf galaxy satellites.

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Publication Details

Journal
The Open Journal of Astrophysics
Published
2026-09-16
DOI
https://doi.org/10.33232/001c.170875
Primary Topic
Galaxies: Formation, Evolution, Phenomena
Type
article
Field-Weighted Citation Impact
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article

The Curious Case of Centaurus A II: On the Subject of the Quenched satellites

Sachi Weerasooriya, Mia Sauda Bovill, Cameron Leahy, Pamela M. Marcum et al.
The Open Journal of Astrophysics
Galaxies: Formation, Evolution, Phenomena
article

The Curious Case of Centaurus A II: On the Subject of the Quenched satellites

Sachi Weerasooriya, Mia Sauda Bovill, Cameron Leahy, Pamela M. Marcum, Alexis Vazquez, Alejandro S. Borlaff, Matthew A. Taylor, Andrew J. Benson, Niusha Ahvazi
article en

Abstract

The satellite system of Centaurus A presents a curious cosmological puzzle: while the global population is consistent with theoretical expectations, its inner regions (d<150 kpc) exhibit a deficit of luminous satellite galaxies. Using the Galacticus semi-analytic model applied to high-resolution N-body merger trees, we investigate potential quenching mechanisms to explain this trend. Our fiducial models, calibrated to the Milky Way, reproduce the overall Cen A population but overpredict the number of bright inner-halo satellites by a factor of 4 +- 1 at Mv < -15.8. We find that this is not due to statistical variance. Instead, the spatial coincidence of this deficiency with Cen A’s massive, kiloparsec-scale radio lobes suggests a powerful environmental driver. We explore a range of physical scenarios, including enhanced tidal disruption, reionization quenching, and suppressed accretion into halos from the surrounding intergalactic medium. Our results indicate that AGN-driven thermal feedback at z < 5 can significantly suppress star formation in satellites, effectively truncating the bright end of the inner luminosity function. Our work suggests that the “Curious Case of Centaurus A” may provide evidence of AGN feedback within the host galaxy that regulates the survival and evolution of its dwarf galaxy satellites.

The Open Journal of AstrophysicsVol. 9
Ames Research Center (US), University of Calgary (CA), Carnegie Observatories (US), University of Maryland, College Park (US), San Francisco State University (US)
Openalex Percentile: Top 85%
Galaxies: Formation, Evolution, Phenomena
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