CO isotopologue-derived molecular gas conditions and CO-to-H$_2$ conversion factors in M51

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Main Authors: Brok, Jakob den, Jiménez-Donaire, María J., Leroy, Adam, Schinnerer, Eva, Bigiel, Frank, Pety, Jérôme, Petitpas, Glen, Usero, Antonio, Teng, Yu-Hsuan, Humire, Pedro, Koch, Eric W., Rosolowsky, Erik, Sandstrom, Karin, Liu, Daizhong, Zhang, Qizhou, Stuber, Sophia, Chevance, Mélanie, Dale, Daniel A., Eibensteiner, Cosima, Galić, Ina, Glover, Simon C. O., Pan, Hsi-An, Querejeta, Miguel, Smith, Rowan J., Williams, Thomas G., Wilner, David J., Zhang, Valencia
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Published: 2024
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author Brok, Jakob den
Jiménez-Donaire, María J.
Leroy, Adam
Schinnerer, Eva
Bigiel, Frank
Pety, Jérôme
Petitpas, Glen
Usero, Antonio
Teng, Yu-Hsuan
Humire, Pedro
Koch, Eric W.
Rosolowsky, Erik
Sandstrom, Karin
Liu, Daizhong
Zhang, Qizhou
Stuber, Sophia
Chevance, Mélanie
Dale, Daniel A.
Eibensteiner, Cosima
Galić, Ina
Glover, Simon C. O.
Pan, Hsi-An
Querejeta, Miguel
Smith, Rowan J.
Williams, Thomas G.
Wilner, David J.
Zhang, Valencia
author_facet Brok, Jakob den
Jiménez-Donaire, María J.
Leroy, Adam
Schinnerer, Eva
Bigiel, Frank
Pety, Jérôme
Petitpas, Glen
Usero, Antonio
Teng, Yu-Hsuan
Humire, Pedro
Koch, Eric W.
Rosolowsky, Erik
Sandstrom, Karin
Liu, Daizhong
Zhang, Qizhou
Stuber, Sophia
Chevance, Mélanie
Dale, Daniel A.
Eibensteiner, Cosima
Galić, Ina
Glover, Simon C. O.
Pan, Hsi-An
Querejeta, Miguel
Smith, Rowan J.
Williams, Thomas G.
Wilner, David J.
Zhang, Valencia
contents Over the past decade, several millimeter interferometer programs have mapped the nearby star-forming galaxy M51 at a spatial resolution of ${\le}170$ pc. This study combines observations from three major programs: the PdBI Arcsecond Whirlpool Survey (PAWS), the SMA M51 large program (SMA-PAWS), and the Surveying the Whirlpool at Arcseconds with NOEMA (SWAN). The dataset includes the (1-0) and (2-1) rotational transitions of $^{12}$CO, $^{13}$CO, and C$^{18}$O isotopologues. The observations cover the $r{<}\rm 3\,kpc$ region including center and part of the disk, thereby ensuring strong detections of the weaker $^{13}$CO and C$^{18}$O lines. All observations are convolved in this analysis to an angular resolution of 4$''$, corresponding to a physical scale of ${\sim}$170 pc. We investigate empirical line ratio relations and quantitatively evaluate molecular gas conditions such as temperature, density, and the CO-to-H$_2$ conversion factor ($α_{\rm CO}$). We employ two approaches to study the molecular gas conditions: (i) assuming local thermal equilibrium (LTE) to analytically determine the CO column density and $α_{\rm CO}$, and (ii) using non-LTE modeling with RADEX to fit physical conditions to observed CO isotopologue intensities. We find that the $α_{\rm CO}$ values {in the center and along the inner spiral arm} are $\sim$0.5 dex (LTE) and ${\sim}$0.1 dex (non-LTE) below the Milky Way inner disk value. The average non-LTE $α_{\rm CO}$ is $2.4{\pm}0.5$ M$_\odot$ pc$^{-2}$ (K km s$^{-1}$)$^{-1}$. While both methods show dispersion due to underlying assumptions, the scatter is larger for LTE-derived values. This study underscores the necessity for robust CO line modeling to accurately constrain the molecular ISM's physical and chemical conditions in nearby galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2410_21399
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle CO isotopologue-derived molecular gas conditions and CO-to-H$_2$ conversion factors in M51
Brok, Jakob den
Jiménez-Donaire, María J.
Leroy, Adam
Schinnerer, Eva
Bigiel, Frank
Pety, Jérôme
Petitpas, Glen
Usero, Antonio
Teng, Yu-Hsuan
Humire, Pedro
Koch, Eric W.
Rosolowsky, Erik
Sandstrom, Karin
Liu, Daizhong
Zhang, Qizhou
Stuber, Sophia
Chevance, Mélanie
Dale, Daniel A.
Eibensteiner, Cosima
Galić, Ina
Glover, Simon C. O.
Pan, Hsi-An
Querejeta, Miguel
Smith, Rowan J.
Williams, Thomas G.
Wilner, David J.
Zhang, Valencia
Astrophysics of Galaxies
Over the past decade, several millimeter interferometer programs have mapped the nearby star-forming galaxy M51 at a spatial resolution of ${\le}170$ pc. This study combines observations from three major programs: the PdBI Arcsecond Whirlpool Survey (PAWS), the SMA M51 large program (SMA-PAWS), and the Surveying the Whirlpool at Arcseconds with NOEMA (SWAN). The dataset includes the (1-0) and (2-1) rotational transitions of $^{12}$CO, $^{13}$CO, and C$^{18}$O isotopologues. The observations cover the $r{<}\rm 3\,kpc$ region including center and part of the disk, thereby ensuring strong detections of the weaker $^{13}$CO and C$^{18}$O lines. All observations are convolved in this analysis to an angular resolution of 4$''$, corresponding to a physical scale of ${\sim}$170 pc. We investigate empirical line ratio relations and quantitatively evaluate molecular gas conditions such as temperature, density, and the CO-to-H$_2$ conversion factor ($α_{\rm CO}$). We employ two approaches to study the molecular gas conditions: (i) assuming local thermal equilibrium (LTE) to analytically determine the CO column density and $α_{\rm CO}$, and (ii) using non-LTE modeling with RADEX to fit physical conditions to observed CO isotopologue intensities. We find that the $α_{\rm CO}$ values {in the center and along the inner spiral arm} are $\sim$0.5 dex (LTE) and ${\sim}$0.1 dex (non-LTE) below the Milky Way inner disk value. The average non-LTE $α_{\rm CO}$ is $2.4{\pm}0.5$ M$_\odot$ pc$^{-2}$ (K km s$^{-1}$)$^{-1}$. While both methods show dispersion due to underlying assumptions, the scatter is larger for LTE-derived values. This study underscores the necessity for robust CO line modeling to accurately constrain the molecular ISM's physical and chemical conditions in nearby galaxies.
title CO isotopologue-derived molecular gas conditions and CO-to-H$_2$ conversion factors in M51
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2410.21399