Feeding cosmic star formation: Exploring high-redshift molecular gas with CO intensity mapping
arXiv:1606.07820 · doi:10.1093/mnras/stx451
Abstract
The study of molecular gas is crucial for understanding star formation, feedback, and the broader ecosystem of a galaxy as a whole. However, we have limited understanding of its physics and distribution in all but the nearest galaxies. We present a new technique for studying the composition and distribution of molecular gas in high-redshift galaxies inaccessible to existing methods. Our proposed approach is an extension of carbon monoxide intensity mapping methods, which have garnered significant experimental interest in recent years. These intensity mapping surveys target the 115 GHz CO (1-0) line, but also contain emission from the substantially fainter 110 GHz CO (1-0) transition. The method leverages the information contained in the CO line by cross-correlating pairs of frequency channels in an intensity mapping survey. Since CO is emitted from the same medium as the CO, but saturates at a much higher column density, this cross-correlation provides valuable information about both the gas density distribution and isotopologue ratio, inaccessible from the CO alone. Using a simple model of these molecular emission lines, we show that a future intensity mapping survey can constrain the abundance ratio of these two species and the fraction of emission from optically thick regions to order . These measurements cannot be made by traditional CO observations, and consequently the proposed method will provide unique insight into the physics of star formation, feedback, and galactic ecology at high redshifts.
11 pages, 4 figures, Published in MNRAS
References in corpus (10)
- Cosmic Star Formation History
- The relation between gas and dust in the Taurus Molecular Cloud
- Canadian Hydrogen Intensity Mapping Experiment (CHIME) Pathfinder
- Protoplanetary disk masses from CO isotopologues line emission
- Carbon monoxide line emission as a CMB foreground: tomography of the star-forming universe with different spectral resolutions
- Intensity mapping of [CII] from early galaxies
- On Removing Interloper Contamination from Intensity Mapping Power Spectrum Measurements
- Cross-correlations as a cosmological carbon monoxide detector
- Carbon Monoxide Intensity Mapping at Moderate Redshifts
- Systematic variation of the 12CO/13CO ratio as a function of star-formation rate surface density
Cited by in corpus (23)
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- Line-Intensity Mapping: 2017 Status Report
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- Line-Intensity Mapping: Theory Review
- A User's Guide to Extracting Cosmological Information from Line-Intensity Maps
- Multi-tracer intensity mapping: Cross-correlations, Line noise & Decorrelation
- Insights from probability distribution functions of intensity maps
- Astrophysics and Cosmology with Line-Intensity Mapping
- Cross-correlating Carbon Monoxide Line-intensity Maps with Spectroscopic and Photometric Galaxy Surveys
- Phase-Space Spectral Line De-confusion in Intensity Mapping
- Searching for Decaying and Annihilating Dark Matter with Line Intensity Mapping
- Studying high-z galaxies with [CII] intensity mapping
- Canceling out intensity mapping foregrounds
- Coupling parsec and gigaparsec scales: primordial non-Gaussianity with multi-tracer intensity mapping
- Revisiting the [C II] line-intensity mapping power spectrum from the EoR using non-uniform line-luminosity scatter
- On estimating the cosmic molecular gas density from CO Line Intensity Mapping observations
- A partial inventory of observational anisotropies in single-dish line-intensity mapping
- Optimally Mapping Large-Scale Structures with Luminous Sources
- Mapping the Universe in HD
- Constraining the halo-ISM connection through multi-transition carbon monoxide line-intensity mapping
- Mapping Large-Scale-Structure Evolution over Cosmic Times
- Constraining the [CII] luminosity function from the power spectrum of line-intensity maps at redshift 3.6
- Probing the warm dark matter mass with [C II] intensity mapping