VALES: II. The physical conditions of interstellar gas in normal star-forming galaxies up to z=0.2 revealed by ALMA
T. M. Hughes, E. Ibar, V. Villanueva, M. Aravena, M. Baes, N. Bourne,, A. Cooray, L. Dunne, S. Dye, S. Eales, C. Furlanetto, R. Herrera-Camus, R. J., Ivison, E. van Kampen, M. A. Lara-L\'opez, S. J. Maddox, M. J., Micha{\l}owski, M. W. L. Smith, E. Valiante, P. van der Werf

TL;DR
This study uses ALMA observations of CO and [CII] lines in 27 star-forming galaxies up to z=0.2 to analyze interstellar gas conditions, revealing that gas density increases with redshift while FUV radiation remains constant.
Contribution
It provides new measurements of interstellar medium conditions in nearby star-forming galaxies using ALMA CO(1-0) data and compares these with higher redshift samples to understand cosmic evolution.
Findings
Gas density increases with redshift by a factor of ~100.
FUV radiation field strength remains constant up to z~6.4.
Average [CII]/CO luminosity ratio is consistent with previous studies.
Abstract
We use new Band-3 CO(1-0) observations taken with the Atacama Large Millimeter/submillimeter Array (ALMA) to study the physical conditions in the interstellar gas of a sample of 27 dusty main-sequence star-forming galaxies at 0.03<<0.2 present in the Valpara\'iso ALMA Line Emission Survey (VALES). The sample is drawn from far-IR bright galaxies over 160 deg in the Herschel Astrophysical Terahertz Large Area Survey (HATLAS), which is covered by Herschel [CII] 158 m spectroscopy and far-infrared (FIR) photometry. The [CII] and CO lines are both detected at >5 in 26 sources. We find an average [CII] to CO(1-0) luminosity ratio of 35001200 for our sample that is consistent with previous studies. Using the [CII], CO and FIR measurements as diagnostics of the physical conditions of the interstellar medium, we compare these observations to the predictions of a…
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