Unusually High Gas-to-Dust Ratios Observed in High-Redshift Quiescent Galaxies

Fuente: arXiv
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Main Authors: Spilker, Justin S., Whitaker, Katherine E., Narayanan, Desika, Bezanson, Rachel, Bodansky, Sarah, D'Onofrio, Vincenzo R., Feldmann, Robert, Goulding, Andy D., Greene, Jenny E., Kriek, Mariska, Luo, Yuanze, Setton, David J., Suess, Katherine A., van der Wel, Arjen, Verrico, Margaret E., Williams, Christina C., Woodrum, Charity, Wu, Po-Feng
Format: Preprint
Published: 2025
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author Spilker, Justin S.
Whitaker, Katherine E.
Narayanan, Desika
Bezanson, Rachel
Bodansky, Sarah
D'Onofrio, Vincenzo R.
Feldmann, Robert
Goulding, Andy D.
Greene, Jenny E.
Kriek, Mariska
Luo, Yuanze
Setton, David J.
Suess, Katherine A.
van der Wel, Arjen
Verrico, Margaret E.
Williams, Christina C.
Woodrum, Charity
Wu, Po-Feng
author_facet Spilker, Justin S.
Whitaker, Katherine E.
Narayanan, Desika
Bezanson, Rachel
Bodansky, Sarah
D'Onofrio, Vincenzo R.
Feldmann, Robert
Goulding, Andy D.
Greene, Jenny E.
Kriek, Mariska
Luo, Yuanze
Setton, David J.
Suess, Katherine A.
van der Wel, Arjen
Verrico, Margaret E.
Williams, Christina C.
Woodrum, Charity
Wu, Po-Feng
contents Tracking the cold molecular gas contents of galaxies is critical to understand the interplay between star formation and galaxy growth across cosmic time. Observations of the long-wavelength dust continuum, a proxy for the cold gas, are widely used in the high-redshift community because of their ease and efficiency. These measurements rely on the assumption of a molecular gas-to-dust mass ratio, typically taken to be GDR ~ 100 in massive, metal-rich systems. We present Atacama Large Millimeter/submillimeter Array (ALMA) observations of the 870um dust continuum in a sample of five massive quiescent galaxies at z ~ 1 with existing detections of CO(2-1). We find surprisingly weak dust emission, falling a factor of >~0.4-0.8 dex below the typical correlation between CO and continuum luminosity. We interpret this dust deficiency as evidence for unusually high GDR in these galaxies, which we calculate to range from 300 to at least 1200. Our results and other observations from the literature are generally compatible with predictions from the SIMBA cosmological simulation that dust is preferentially destroyed in quiescent galaxies. Ultimately, we conclude that the dust continuum is a highly unreliable tracer of the molecular gas in high-redshift quiescent galaxies. As a consequence we may know much less about the cold gas contents of this population than previously thought.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16914
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unusually High Gas-to-Dust Ratios Observed in High-Redshift Quiescent Galaxies
Spilker, Justin S.
Whitaker, Katherine E.
Narayanan, Desika
Bezanson, Rachel
Bodansky, Sarah
D'Onofrio, Vincenzo R.
Feldmann, Robert
Goulding, Andy D.
Greene, Jenny E.
Kriek, Mariska
Luo, Yuanze
Setton, David J.
Suess, Katherine A.
van der Wel, Arjen
Verrico, Margaret E.
Williams, Christina C.
Woodrum, Charity
Wu, Po-Feng
Astrophysics of Galaxies
Tracking the cold molecular gas contents of galaxies is critical to understand the interplay between star formation and galaxy growth across cosmic time. Observations of the long-wavelength dust continuum, a proxy for the cold gas, are widely used in the high-redshift community because of their ease and efficiency. These measurements rely on the assumption of a molecular gas-to-dust mass ratio, typically taken to be GDR ~ 100 in massive, metal-rich systems. We present Atacama Large Millimeter/submillimeter Array (ALMA) observations of the 870um dust continuum in a sample of five massive quiescent galaxies at z ~ 1 with existing detections of CO(2-1). We find surprisingly weak dust emission, falling a factor of >~0.4-0.8 dex below the typical correlation between CO and continuum luminosity. We interpret this dust deficiency as evidence for unusually high GDR in these galaxies, which we calculate to range from 300 to at least 1200. Our results and other observations from the literature are generally compatible with predictions from the SIMBA cosmological simulation that dust is preferentially destroyed in quiescent galaxies. Ultimately, we conclude that the dust continuum is a highly unreliable tracer of the molecular gas in high-redshift quiescent galaxies. As a consequence we may know much less about the cold gas contents of this population than previously thought.
title Unusually High Gas-to-Dust Ratios Observed in High-Redshift Quiescent Galaxies
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2507.16914