CHILES X: Molecular and atomic gas at intermediate redshift

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Main Authors: Hess, Kelley M., Hibbard, John, Meyer, Jennifer Donovan, Gim, Hansung B., Luber, Nicholas M., Yun, Min S., Bird, Julia Blue, Dodson, Richard, Chung, Aeree, Lucero, Danielle, Momjian, Emmanuel, Pisano, D. J., van Gorkom, J. H.
Format: Preprint
Published: 2025
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author Hess, Kelley M.
Hibbard, John
Meyer, Jennifer Donovan
Gim, Hansung B.
Luber, Nicholas M.
Yun, Min S.
Bird, Julia Blue
Dodson, Richard
Chung, Aeree
Lucero, Danielle
Momjian, Emmanuel
Pisano, D. J.
van Gorkom, J. H.
author_facet Hess, Kelley M.
Hibbard, John
Meyer, Jennifer Donovan
Gim, Hansung B.
Luber, Nicholas M.
Yun, Min S.
Bird, Julia Blue
Dodson, Richard
Chung, Aeree
Lucero, Danielle
Momjian, Emmanuel
Pisano, D. J.
van Gorkom, J. H.
contents We present ALMA CO observations of 14 HI-detected galaxies from the CHILES survey found in a cosmic over-density at z~0.12. This is the largest collection of spatially resolved CO + HI observations beyond the local Universe (z>0.05) to date. While the HI-detected parent sample spans a range of stellar masses, star formation rates (SFR), and environments, we only directly detect CO in the highest stellar mass galaxies, log(M_*/M_Sun)>10.0, with SFRs greater than ~2 M_Sun/yr. The detected CO has the kinematic signature of a rotating disk, consistent with the HI. We stack the CO non-detections and find a mean H_2 mass of log(M_H2/M_Sun) = 8.46 in galaxies with a mean stellar mass of log(M_*/M_Sun) = 9.35. In addition to high stellar masses and SFRs, the systems detected in CO are spatially larger, have redder overall colors, and exhibit broader (stacked) line widths. The CO emission is spatially coincident with both the highest stellar mass surface density and star forming region of the galaxies, as revealed by the 1.4 GHz continuum emission. We interpret the redder colors as the molecular gas being coincident with dusty regions of obscured star formation. The 14 HI detections show a range of morphologies, but the HI reservoir is always more extended than the CO. Finally, we compare with samples in the literature and find mild evidence for evolution in the molecular gas reservoir and H_2-to-HI gas ratio with redshift in HI flux-limited samples. We show that the scatter in the HI, and HI-to-stellar mass ratio is too great to conclusively measure evolution below z=0.2, and is even extremely difficult below z=0.4. Detections from CHILES are likely to be the only individual galaxies detected in HI between 0.1<z<0.23 for the foreseeable future due to the severity of satellite radio frequency interference, and its preferential impact on short baselines which dominate contemporary HI surveys.
format Preprint
id arxiv_https___arxiv_org_abs_2510_07966
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle CHILES X: Molecular and atomic gas at intermediate redshift
Hess, Kelley M.
Hibbard, John
Meyer, Jennifer Donovan
Gim, Hansung B.
Luber, Nicholas M.
Yun, Min S.
Bird, Julia Blue
Dodson, Richard
Chung, Aeree
Lucero, Danielle
Momjian, Emmanuel
Pisano, D. J.
van Gorkom, J. H.
Astrophysics of Galaxies
We present ALMA CO observations of 14 HI-detected galaxies from the CHILES survey found in a cosmic over-density at z~0.12. This is the largest collection of spatially resolved CO + HI observations beyond the local Universe (z>0.05) to date. While the HI-detected parent sample spans a range of stellar masses, star formation rates (SFR), and environments, we only directly detect CO in the highest stellar mass galaxies, log(M_*/M_Sun)>10.0, with SFRs greater than ~2 M_Sun/yr. The detected CO has the kinematic signature of a rotating disk, consistent with the HI. We stack the CO non-detections and find a mean H_2 mass of log(M_H2/M_Sun) = 8.46 in galaxies with a mean stellar mass of log(M_*/M_Sun) = 9.35. In addition to high stellar masses and SFRs, the systems detected in CO are spatially larger, have redder overall colors, and exhibit broader (stacked) line widths. The CO emission is spatially coincident with both the highest stellar mass surface density and star forming region of the galaxies, as revealed by the 1.4 GHz continuum emission. We interpret the redder colors as the molecular gas being coincident with dusty regions of obscured star formation. The 14 HI detections show a range of morphologies, but the HI reservoir is always more extended than the CO. Finally, we compare with samples in the literature and find mild evidence for evolution in the molecular gas reservoir and H_2-to-HI gas ratio with redshift in HI flux-limited samples. We show that the scatter in the HI, and HI-to-stellar mass ratio is too great to conclusively measure evolution below z=0.2, and is even extremely difficult below z=0.4. Detections from CHILES are likely to be the only individual galaxies detected in HI between 0.1<z<0.23 for the foreseeable future due to the severity of satellite radio frequency interference, and its preferential impact on short baselines which dominate contemporary HI surveys.
title CHILES X: Molecular and atomic gas at intermediate redshift
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2510.07966