CO-CHANGES II: spatially resolved IRAM 30M CO line observations of 23 nearby edge-on spiral galaxies
arXiv:2412.09855 · doi:10.1051/0004-6361/202452596
Abstract
Molecular gas, as the fuel for star formation, and its relationship with atomic gas are crucial for understanding how galaxies regulate their star forming (SF) activities. We conducted IRAM 30m observations of 23 nearby spiral galaxies from the CHANG-ES project to investigatet the distribution of molecular gas and the Kennicutt-Schmidt law. Combining these results with atomic gas masses from previous studies, we aim to investigate the scaling relations that connect the molecular and atomic gas masses with stellar masses and the baryonic Tully-Fisher relation. Based on spatially resolved observations of the three CO lines, we calculated the total molecular gas masses, the ratios between different CO lines, and derived physical parameters such as temperature and optical depth. The median line ratios for nuclear/disk regions are 8.6/6.1 (^{12}\mathrm{CO}/^{13}\mathrm{CO}\ J=1{-}0) and 0.53/0.39 (^{12}\mathrm{CO}\ J=2{-}1/J=1{-}0). Molecular gas mass derived from ^{13}\mathrm{CO} is correlated but systematically lower than that from ^{12}\mathrm{CO}. Most galaxies follow the spatially resolved SF scaling relation with a median gas depletion timescale of approximately 1 Gyr, while a few exhibit shorter timescales of approximately 0.1 Gyr. The molecular-to-atomic gas mass ratio correlates strongly with stellar mass, consistent with previous studies. Galaxies with lower stellar masses show an excess of atomic gas, indicating less efficient conversion to molecular gas. Most galaxies tightly follow the baryonic Tully-Fisher relation, but NGC 2992 and NGC 4594 deviate from the relation due to different physical factors. We find that the ratio of the cold gas (comprising molecular and atomic gas) to the total baryon mass decreases with the gravitational potential of the galaxy, as traced by rotation velocity, which could be due to gas consumption in SF or being heated to the hot phase.
15 pages, 11 figures (Figure 3 shows only a single galaxy example from the sample; all other galaxies in the sample are available online only.), 4 tables (full version of Table 2 and Table 3 is only available online). Accepted for publication in A&A
References in corpus (35)
- UV Star Formation Rates in the Local Universe
- HyperLEDA. III. The catalogue of extragalactic distances
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- COLD GASS, an IRAM Legacy Survey of Molecular Gas in Massive Galaxies: II. The non-universality of the Molecular Gas Depletion Timescale
- Bias-free Measurement of Giant Molecular Cloud Properties
- The cold interstellar medium of galaxies in the Local Universe
- Starbursts triggered by inter-galactic tides and interstellar compressive turbulence
- The Atomic to Molecular Transition and its Relation to the Scaling Properties of Galaxy Disks in the Local Universe
- New Constraints on the CO(2-1)/(1-0) Line Ratio Across Nearby Disc Galaxies
- Low-J CO Line Ratios From Single Dish CO Mapping Surveys and PHANGS-ALMA
- ALLSMOG: an APEX Low-redshift Legacy Survey for MOlecular Gas. I - molecular gas scaling relations, and the effect of the CO/H2 conversion factor
- Full-disc CO(1-0) mapping across nearby galaxies of the EMPIRE survey and the CO-to-H conversion factor
- CI and CO in nearby galaxy centers: the bright galaxies NGC1068 (M77), NGC2146, NGC3079, NGC4826 (M64), and NGC7469
- The Circum-Galactic Medium of MASsive Spirals II: Probing the Nature of Hot Gaseous Halo around the Most Massive Isolated Spiral Galaxies
- The final data release of ALLSMOG: a survey of CO in typical local low-M* star-forming galaxies
- CO Multi-line Imaging of Nearby Galaxies (COMING). IX. CO(=2-1)/CO(=1-0) line ratio on kiloparsec scales
- Using CO line ratios to trace the physical properties of molecular clouds
- Hot Extended Galaxy Halos Around Local L* Galaxies From Sunyaev-Zeldovich Measurements
- CO/CO Gradients Across the Disks of Nearby Spiral Galaxies
- Update on HI data collection from GBT, Parkes and Arecibo telescopes for the Cosmic Flows project
- CO observations of major merger pairs at z=0: Molecular gas mass and star formation
- CHANG-ES XX. High Resolution Radio Continuum Images of Edge-on Galaxies and their AGNs -- Data Release 3
- FEASTS: IGM cooling triggered by tidal interactions through the diffuse HI phase around NGC 4631
- CHANG-ES VIII: Uncovering Hidden AGN Activity in Radio Polarization
- The Circum-Galactic Medium of MASsive Spirals I: Overview and a Case Study of NGC 5908
- NGC 2992: The interplay between the multiphase disk, wind and radio bubbles
- CHANG-ES XXV: HI Imaging of Nearby Edge-on Galaxies -- Data Release 4
- eDIG-CHANGES I: Extended Hα Emission from the Extraplanar Diffuse Ionized Gas (eDIG) around CHANG-ES Galaxies
- CARMA Survey toward Infrared-bright Nearby Galaxies (STING). IV. Spatially Resolved 13CO in Spiral Galaxies
- Molecular Gas of the Most Massive Spiral Galaxies I: a Case Study of NGC 5908
- A Molecular Gas Ring Hidden in the Sombrero Galaxy
- CO-CHANGES I: IRAM 30m CO Observations of Molecular Gas in the Sombrero Galaxy
- Molecular gas in super spiral galaxies