Gas Content and Kinematics in Clumpy, Turbulent Star-forming Disks

We present molecular gas-mass estimates for a sample of 13 local galaxies whose kinematic and star-forming properties closely resemble those observed in z 1.5 main-sequence galaxies. Plateau de Bure observations of the CO[1-0] emission line and Herschel Space Observatory observations of the dust emi...

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Veröffentlicht in:The Astrophysical journal 2017-09, Vol.846 (1), p.35
Hauptverfasser: White, Heidi A., Fisher, David B., Murray, Norman, Glazebrook, Karl, Abraham, Roberto G., Bolatto, Alberto D., Green, Andrew W., Mentuch Cooper, Erin, Obreschkow, Danail
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Sprache:eng
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Zusammenfassung:We present molecular gas-mass estimates for a sample of 13 local galaxies whose kinematic and star-forming properties closely resemble those observed in z 1.5 main-sequence galaxies. Plateau de Bure observations of the CO[1-0] emission line and Herschel Space Observatory observations of the dust emission both suggest molecular gas-mass fractions of ∼20%. Moreover, dust emission modeling finds Tdust < 30 K, suggesting a cold dust distribution compared to their high infrared luminosity. The gas-mass estimates argue that z ∼ 0.1 DYNAMO galaxies not only share similar kinematic properties with high-z disks, but they are also similarly rich in molecular material. Pairing the gas-mass fractions with existing kinematics reveals a linear relationship between fgas and /vc, consistent with predictions from stability theory of a self-gravitating disk. It thus follows that high gas-velocity dispersions are a natural consequence of large gas fractions. We also find that the systems with the lowest tdep (∼0.5 Gyr) have the highest ratios of /vc and more pronounced clumps, even at the same high molecular gas fraction.
ISSN:0004-637X
1538-4357
DOI:10.3847/1538-4357/aa7fbf