PGC 44685: A Dwarf Star-forming Lenticular Galaxy with Wolf-Rayet Population

Fuente: arXiv
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Main Authors: Lu, Shiying, Gu, Qiusheng, Gao, Yulong, Shi, Yong, Zhou, Luwenjia, García-Benito, Rubén, Li, Xiangdong, Cui, Jiantong, Li, Xin, Long, Liuze, Chen, Zhengyi
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Published: 2024
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author Lu, Shiying
Gu, Qiusheng
Gao, Yulong
Shi, Yong
Zhou, Luwenjia
García-Benito, Rubén
Li, Xiangdong
Cui, Jiantong
Li, Xin
Long, Liuze
Chen, Zhengyi
author_facet Lu, Shiying
Gu, Qiusheng
Gao, Yulong
Shi, Yong
Zhou, Luwenjia
García-Benito, Rubén
Li, Xiangdong
Cui, Jiantong
Li, Xin
Long, Liuze
Chen, Zhengyi
contents Lenticular galaxies (S0s) are formed mainly from the gas stripping of spirals in the cluster. But how S0s form and evolve in the field is still untangled. Based on spatially resolved observations from the optical Hispanic Astronomical Center in Andalusia 3.5-m telescope with the PPAK Integral Field Spectroscopy instrument and NOrthern Extended Millimeter Array, we study a dwarf (M*<10^9 Msun) S0, PGC 44685, with triple star-forming regions in the central region, namely A, B, and C, respectively. In northwest region C, we clearly detect the spectral features of Wolf-Rayet (WR) stars and quantify the WR population by stacking spectra with high WR significance. Most of the molecular gas is concentrated in the region C(WR), and there is diffuse gas around regions A and B. The WR region possesses the strongest intensities of Ha, CO(1-0), and 3mm continuum, indicating its ongoing violent star formation (gas depletion timescale $\lesssim$25 Myr) with tentative hundreds (<500) km/s stellar winds accompanied by the WR phase. Most (~96%) of three star-forming regions show relatively low metallicity distributions, suggesting possible (minor) accretions of metal-poor gas that trigger the subsequent complex star formation in a field S0 galaxy. We speculate that PGC 44685 will become quiescent in less than 30 Myr if there is no new molecular gas to provide raw materials for star formation. The existence of this dwarf star-forming S0 presents an example of star formation in the low-mass/metallicity S0 galaxy.
format Preprint
id arxiv_https___arxiv_org_abs_2410_13119
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle PGC 44685: A Dwarf Star-forming Lenticular Galaxy with Wolf-Rayet Population
Lu, Shiying
Gu, Qiusheng
Gao, Yulong
Shi, Yong
Zhou, Luwenjia
García-Benito, Rubén
Li, Xiangdong
Cui, Jiantong
Li, Xin
Long, Liuze
Chen, Zhengyi
Astrophysics of Galaxies
Lenticular galaxies (S0s) are formed mainly from the gas stripping of spirals in the cluster. But how S0s form and evolve in the field is still untangled. Based on spatially resolved observations from the optical Hispanic Astronomical Center in Andalusia 3.5-m telescope with the PPAK Integral Field Spectroscopy instrument and NOrthern Extended Millimeter Array, we study a dwarf (M*<10^9 Msun) S0, PGC 44685, with triple star-forming regions in the central region, namely A, B, and C, respectively. In northwest region C, we clearly detect the spectral features of Wolf-Rayet (WR) stars and quantify the WR population by stacking spectra with high WR significance. Most of the molecular gas is concentrated in the region C(WR), and there is diffuse gas around regions A and B. The WR region possesses the strongest intensities of Ha, CO(1-0), and 3mm continuum, indicating its ongoing violent star formation (gas depletion timescale $\lesssim$25 Myr) with tentative hundreds (<500) km/s stellar winds accompanied by the WR phase. Most (~96%) of three star-forming regions show relatively low metallicity distributions, suggesting possible (minor) accretions of metal-poor gas that trigger the subsequent complex star formation in a field S0 galaxy. We speculate that PGC 44685 will become quiescent in less than 30 Myr if there is no new molecular gas to provide raw materials for star formation. The existence of this dwarf star-forming S0 presents an example of star formation in the low-mass/metallicity S0 galaxy.
title PGC 44685: A Dwarf Star-forming Lenticular Galaxy with Wolf-Rayet Population
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2410.13119