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Auteurs principaux: Deng, Yikai, Li, Zongnan, Li, Zhiyuan, Liu, Lijie, Ren, Zhiyuan, Athikkat-Eknath, Gayathri, de Grijs, Richard, Eales, Stephen A., Eden, David J., Iono, Daisuke, Jiao, Sihan, Lee, Bumhyun, Li, Di, Saintonge, Amelie, Smith, Matthew W. L., Tang, Xindi, Tsai, Chaowei, van der Giessen, Stefan A., Williams, Thomas G., Wu, Jingwen
Format: Preprint
Publié: 2025
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Accès en ligne:https://arxiv.org/abs/2503.12513
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author Deng, Yikai
Li, Zongnan
Li, Zhiyuan
Liu, Lijie
Ren, Zhiyuan
Athikkat-Eknath, Gayathri
de Grijs, Richard
Eales, Stephen A.
Eden, David J.
Iono, Daisuke
Jiao, Sihan
Lee, Bumhyun
Li, Di
Saintonge, Amelie
Smith, Matthew W. L.
Tang, Xindi
Tsai, Chaowei
van der Giessen, Stefan A.
Williams, Thomas G.
Wu, Jingwen
author_facet Deng, Yikai
Li, Zongnan
Li, Zhiyuan
Liu, Lijie
Ren, Zhiyuan
Athikkat-Eknath, Gayathri
de Grijs, Richard
Eales, Stephen A.
Eden, David J.
Iono, Daisuke
Jiao, Sihan
Lee, Bumhyun
Li, Di
Saintonge, Amelie
Smith, Matthew W. L.
Tang, Xindi
Tsai, Chaowei
van der Giessen, Stefan A.
Williams, Thomas G.
Wu, Jingwen
contents We present a study of giant molecular cloud (GMC) properties in the Andromeda galaxy (M31) using CO(3-2) data from the James Clerk Maxwell Telescope (JCMT) in selected regions across the disc and in the nuclear ring, and comparing them with CO(1-0) observations from the IRAM 30m telescope in the same regions. We find that GMCs in the centre of M31 generally exhibit larger velocity dispersions ($σ$) and sizes ($R$) compared to those in the disc, while their average surface density ($Σ$) and turbulent pressure ($P_{\rm turb}$) are lower. This low turbulent pressure in the central region is primarily due to the low density of molecular gas. The estimated GMC properties depend on the choice of CO transitions. Compared to CO(1-0), CO(3-2) exhibits smaller velocity dispersion and equivalent radius but higher surface density. These differences highlight the distinct physical conditions probed by different molecular gas tracers. We estimate the virial parameter $α_{\rm vir}\propto σ^2 R/Σ$ and find that most molecular clouds exhibit high values ($α_{\rm vir} \sim 4-6$) for both CO transitions, indicating that they are unbound. Furthermore, clouds in the nuclear ring display even larger $α_{\rm vir}$ values of $\lesssim 100$, suggesting that they may be highly dynamic, short-lived structures, although they could potentially achieve equilibrium under the external pressure exerted by the surrounding interstellar medium.
format Preprint
id arxiv_https___arxiv_org_abs_2503_12513
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The HASHTAG project II. Giant molecular cloud properties across the M31 disc
Deng, Yikai
Li, Zongnan
Li, Zhiyuan
Liu, Lijie
Ren, Zhiyuan
Athikkat-Eknath, Gayathri
de Grijs, Richard
Eales, Stephen A.
Eden, David J.
Iono, Daisuke
Jiao, Sihan
Lee, Bumhyun
Li, Di
Saintonge, Amelie
Smith, Matthew W. L.
Tang, Xindi
Tsai, Chaowei
van der Giessen, Stefan A.
Williams, Thomas G.
Wu, Jingwen
Astrophysics of Galaxies
We present a study of giant molecular cloud (GMC) properties in the Andromeda galaxy (M31) using CO(3-2) data from the James Clerk Maxwell Telescope (JCMT) in selected regions across the disc and in the nuclear ring, and comparing them with CO(1-0) observations from the IRAM 30m telescope in the same regions. We find that GMCs in the centre of M31 generally exhibit larger velocity dispersions ($σ$) and sizes ($R$) compared to those in the disc, while their average surface density ($Σ$) and turbulent pressure ($P_{\rm turb}$) are lower. This low turbulent pressure in the central region is primarily due to the low density of molecular gas. The estimated GMC properties depend on the choice of CO transitions. Compared to CO(1-0), CO(3-2) exhibits smaller velocity dispersion and equivalent radius but higher surface density. These differences highlight the distinct physical conditions probed by different molecular gas tracers. We estimate the virial parameter $α_{\rm vir}\propto σ^2 R/Σ$ and find that most molecular clouds exhibit high values ($α_{\rm vir} \sim 4-6$) for both CO transitions, indicating that they are unbound. Furthermore, clouds in the nuclear ring display even larger $α_{\rm vir}$ values of $\lesssim 100$, suggesting that they may be highly dynamic, short-lived structures, although they could potentially achieve equilibrium under the external pressure exerted by the surrounding interstellar medium.
title The HASHTAG project II. Giant molecular cloud properties across the M31 disc
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2503.12513