Hidden Cooling Flows in Elliptical Galaxies

Fuente: arXiv
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Main Authors: Ivey, L. R., Fabian, A. C., Sanders, J. S., Pinto, C., Ferland, G. J., Walker, S., Jiang, J.
Format: Preprint
Published: 2024
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author Ivey, L. R.
Fabian, A. C.
Sanders, J. S.
Pinto, C.
Ferland, G. J.
Walker, S.
Jiang, J.
author_facet Ivey, L. R.
Fabian, A. C.
Sanders, J. S.
Pinto, C.
Ferland, G. J.
Walker, S.
Jiang, J.
contents The radiative cooling time of hot gas in the cool cores of many galaxy clusters and massive elliptical galaxies drops in the centre to below 100 million years. The mass cooling rates inferred from simple modelling of X-ray observations of these objects are very low, indicating that either AGN feedback is tightly balanced or that soft X-rays from cooling gas are somehow hidden from view. An intrinsic absorption model developed for application to galaxy clusters is used here to search for hidden cooling flows (HCFs) in seven nearby elliptical galaxies. Mass cooling rates of 0.5-8 solar masses per year are found in each galaxy. The absorbed cooling flow luminosity is in agreement with the observed Far Infrared (FIR) luminosity in each case, indicating absorbed emission is energetically capable of emerging in the FIR band. An observed lack of agreement between HCF rates and normal star formation rates suggests the cooled material must have an alternative fate, with low-mass star formation considered as the primary outcome.
format Preprint
id arxiv_https___arxiv_org_abs_2411_03864
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Hidden Cooling Flows in Elliptical Galaxies
Ivey, L. R.
Fabian, A. C.
Sanders, J. S.
Pinto, C.
Ferland, G. J.
Walker, S.
Jiang, J.
Astrophysics of Galaxies
The radiative cooling time of hot gas in the cool cores of many galaxy clusters and massive elliptical galaxies drops in the centre to below 100 million years. The mass cooling rates inferred from simple modelling of X-ray observations of these objects are very low, indicating that either AGN feedback is tightly balanced or that soft X-rays from cooling gas are somehow hidden from view. An intrinsic absorption model developed for application to galaxy clusters is used here to search for hidden cooling flows (HCFs) in seven nearby elliptical galaxies. Mass cooling rates of 0.5-8 solar masses per year are found in each galaxy. The absorbed cooling flow luminosity is in agreement with the observed Far Infrared (FIR) luminosity in each case, indicating absorbed emission is energetically capable of emerging in the FIR band. An observed lack of agreement between HCF rates and normal star formation rates suggests the cooled material must have an alternative fate, with low-mass star formation considered as the primary outcome.
title Hidden Cooling Flows in Elliptical Galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2411.03864