The Fate of the Interstellar Medium in Early-type Galaxies. V. AGN Feedback from Optical Spectral Classification

Fuente: arXiv
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Main Authors: Ryzhov, Oleh, Michałowski, Michał J., Nadolny, J., Hjorth, J., Leśniewska, A., Solar, M., Nowaczyk, P., Gall, C., Takeuchi, T. T.
Format: Preprint
Published: 2024
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author Ryzhov, Oleh
Michałowski, Michał J.
Nadolny, J.
Hjorth, J.
Leśniewska, A.
Solar, M.
Nowaczyk, P.
Gall, C.
Takeuchi, T. T.
author_facet Ryzhov, Oleh
Michałowski, Michał J.
Nadolny, J.
Hjorth, J.
Leśniewska, A.
Solar, M.
Nowaczyk, P.
Gall, C.
Takeuchi, T. T.
contents Quenching of star-formation plays a fundamental role in galaxy evolution. This process occurs due to the removal of the cold interstellar medium (ISM) or stabilization against collapse, so that gas cannot be used in the formation of new stars. In this paper, we study the effect of different mechanisms of ISM removal. In particular, we revised the well-known Baldwin-Philips-Terlevich (BPT) and $\mathrm{EW_{Hα}}$ vs. $\mathrm{[NII]/Hα}$ (WHAN) emission-line ratio diagnostics, so that we could classify all galaxies, even those not detected at some emission lines, introducing several new spectral classes. We use spectroscopic data and several physical parameters of 2409 dusty early-type galaxies in order to find out the dominant ionization source [active galactic nuclei (AGNs), young massive stars, hot low-mass evolved stars (HOLMES)] and its effect on the ISM. We find that strong AGNs can play a significant role in the ISM removal process only for galaxies with ages lower than $10^{9.4}$ yr, but we cannot rule out the influence of weak AGNs at any age. For older galaxies, HOLMES/planetary nebulae contribute significantly to the ISM removal process. Additionally, we provide the BPT and WHAN classifications not only for the selected sample but also for all 300000 galaxies in the GAMA fields.
format Preprint
id arxiv_https___arxiv_org_abs_2411_10517
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The Fate of the Interstellar Medium in Early-type Galaxies. V. AGN Feedback from Optical Spectral Classification
Ryzhov, Oleh
Michałowski, Michał J.
Nadolny, J.
Hjorth, J.
Leśniewska, A.
Solar, M.
Nowaczyk, P.
Gall, C.
Takeuchi, T. T.
Astrophysics of Galaxies
Quenching of star-formation plays a fundamental role in galaxy evolution. This process occurs due to the removal of the cold interstellar medium (ISM) or stabilization against collapse, so that gas cannot be used in the formation of new stars. In this paper, we study the effect of different mechanisms of ISM removal. In particular, we revised the well-known Baldwin-Philips-Terlevich (BPT) and $\mathrm{EW_{Hα}}$ vs. $\mathrm{[NII]/Hα}$ (WHAN) emission-line ratio diagnostics, so that we could classify all galaxies, even those not detected at some emission lines, introducing several new spectral classes. We use spectroscopic data and several physical parameters of 2409 dusty early-type galaxies in order to find out the dominant ionization source [active galactic nuclei (AGNs), young massive stars, hot low-mass evolved stars (HOLMES)] and its effect on the ISM. We find that strong AGNs can play a significant role in the ISM removal process only for galaxies with ages lower than $10^{9.4}$ yr, but we cannot rule out the influence of weak AGNs at any age. For older galaxies, HOLMES/planetary nebulae contribute significantly to the ISM removal process. Additionally, we provide the BPT and WHAN classifications not only for the selected sample but also for all 300000 galaxies in the GAMA fields.
title The Fate of the Interstellar Medium in Early-type Galaxies. V. AGN Feedback from Optical Spectral Classification
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2411.10517