Neutral carbon and CO in 76 (U)LIRGs and starburst galaxy centers A method to determine molecular gas properties in luminous galaxies
arXiv:1504.08005 · doi:10.1051/0004-6361/201425175
Abstract
We present fluxes in both neutral carbon [CI] lines at the centers of 76 galaxies with FIR luminosities between 10^{9} and 10^{12} L(o) obtained with Herschel-SPIRE and with ground-based facilities, along with the J=7-6, J=4-3, J=2-1 12CO and J=2-1 13CO line fluxes. We investigate whether these lines can be used to characterize the molecular ISM of the parent galaxies in simple ways and how the molecular gas properties define the model results. In most starburst galaxies, the [CI]/13CO flux ratio is much higher than in Galactic star-forming regions, and it is correlated to the total FIR luminosity. The [CI](1-0)/CO(4-3), the [CI](2-1) (2-1)/CO(7-6), and the [CI] (2-1)/(1-0) flux ratios are also correlated, and trace the excitation of the molecular gas. In the most luminous infrared galaxies (LIRGs), the ISM is fully dominated by dense and moderately warm gas clouds that appear to have low [C]/[CO] and [13CO]/[12CO] abundances. In less luminous galaxies, emission from gas clouds at lower densities becomes progressively more important, and a multiple-phase analysis is required to determine consistent physical characteristics. Neither the CO nor the [CI] velocity-integrated line fluxes are good predictors of H2 column densities in individual galaxies, and X(CI) conversion factors are not superior to X(CO) factors. The methods and diagnostic diagrams outlined in this paper also provide a new and relatively straightforward means of deriving the physical characteristics of molecular gas in high-redshift galaxies up to z=5, which are otherwise hard to determine.
References in corpus (17)
- Diagnostics of irradiated dense gas in galaxy nuclei. II. A grid of XDR and PDR models
- The Herschel Comprehensive (U)LIRG Emission Survey (HerCULES): CO Ladders, fine structure lines, and neutral gas cooling
- ATLASGAL-selected massive clumps in the inner Galaxy: I. CO depletion and isotopic ratios
- Cold Molecular Gas in Merger Remnants: I. Formation of Molecular Gas Disks
- Modelling [CI] emission from turbulent molecular clouds
- On carbon and oxygen isotope ratios in starburst galaxies: New data from NGC253 and Mrk231 and their implications
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- CI and CO in nearby galaxy centers: the bright galaxies NGC1068 (M77), NGC2146, NGC3079, NGC4826 (M64), and NGC7469
- A Survey of the Molecular ISM Properties of Nearby Galaxies using the Herschel FTS
- A survey of submillimeter C and CO lines in nearby galaxies
- Imaging Molecular Gas in the Luminous Merger NGC 3256 : Detection of High-Velocity Gas and Twin Gas Peaks in the Double Nucleus
- Physical conditions of molecular gas in the Circinus galaxy: Multi-J CO and CI 1-0 observations
- Systematic variation of the 12CO/13CO ratio as a function of star-formation rate surface density
- Warm molecular gas temperature distribution in six local infrared bright Seyfert galaxies
- Atomic carbon as a powerful tracer of molecular gas in the high-redshift Universe: perspectives for ALMA
- Molecular gas heating in Arp 299
- 12CO 4-3 and [CI] 1-0 at the centers of NGC 4945 and Circinus
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- Warm and Cold Molecular Gas Conditions Modeled in 87 Galaxies Observed by the Herschel SPIRE Fourier Transform Spectrometer
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- Multiwavelength characterisation of an ACT-selected, lensed dusty star-forming galaxy at z=2.64
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