Biases and Cosmic Variance in Molecular Gas Abundance Measurements
arXiv:2010.00609 · doi:10.3847/1538-4357/abbd9b
Abstract
Recent deep millimeter-wave surveys attempt to measure the carbon monoxide (CO) luminosity function and mean molecular gas density through blind detections of CO emission lines. While the cosmic star formation rate density is now constrained in fields hundreds of arcmin or more, molecular gas studies have been limited to arcmin. These small fields result in significant biases that have not been accounted for in published results. To quantify these biases, we assign CO luminosities to halos in cosmological simulations to produce mock observations for a range of field sizes. We find that fields arcmin alter the recovered shape of the luminosity function, causing underestimates of the number of bright objects. Our models suggest that current surveys are sensitive enough to detect sources responsible for approximately half of the cosmic molecular gas density at high redshift. However, uncertainties in the gas density measurement are large, and cosmic variance may double the uncertainty claimed in these surveys. As a result, the field size needed to detect redshift evolution in the molecular gas at high confidence may be more than an order of magnitude larger than what current surveys have achieved. Shot power intensity mapping measurements are particularly sensitive to Poisson variance and require yet larger areas to constrain the gas density or its evolution. We provide a simple prescription for approximating uncertainty in total CO emission as a function of survey area and redshift, for both direct detection and intensity mapping surveys.
31 pages, 15 figures, 4 appendices. Published in ApJ
References in corpus (27)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- xCOLD GASS: the complete IRAM-30m legacy survey of molecular gas for galaxy evolution studies
- z~7-10 Galaxies in the HUDF and GOODS fields, and their UV Luminosity Functions
- CO excitation of normal star forming galaxies out to z=1.5 as regulated by the properties of their interstellar medium
- ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Survey Description
- Star formation relations and CO SLEDs across the J-ladder and redshift
- The ALMA Spectroscopic Survey in the HUDF: CO luminosity functions and the molecular gas content of galaxies through cosmic history
- Automated Mining of the ALMA Archive in the COSMOS Field (A3COSMOS): II. Cold Molecular Gas Evolution out to Redshift 6
- ALMA spectroscopic survey in the Hubble Ultra Deep Field: CO luminosity functions and the evolution of the cosmic density of molecular gas
- PHIBSS2: survey design and z=0.5-0.8 results. Molecular gas reservoirs during the winding-down of star formation
- Molecular gas content in strongly-lensed z~1.5-3 star-forming galaxies with low IR luminosities
- Evolution of the atomic and molecular gas content of galaxies in dark matter haloes
- Cross-correlations as a cosmological carbon monoxide detector
- The ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Evolution of the molecular gas in CO-selected galaxies
- The ALMA Spectroscopic Survey in the HUDF: the molecular gas content of galaxies and tensions with IllustrisTNG and the Santa Cruz SAM
- The ALMA Spectroscopic Survey in the HUDF: The Cosmic Dust and Gas Mass Densities in Galaxies up to
- Carbon Monoxide Intensity Mapping at Moderate Redshifts
- An Intensity Mapping Detection of Aggregate CO Line Emission at 3 mm
- The ALMA Spectroscopic Survey in the HUDF: Nature and physical properties of gas-mass selected galaxies using MUSE spectroscopy
- A Flexible Method of Estimating Luminosity Functions
- Plateau de Bure High-z Blue-Sequence Survey 2 (PHIBSS2): Search for Secondary Sources, CO Luminosity Functions in the Field, and the Evolution of Molecular Gas Density through Cosmic Time
- ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: implications for spectral line intensity mapping at millimeter wavelengths and CMB spectral distortions
- ALMA reveals the molecular gas properties of 5 star-forming galaxies across the main sequence at 3 < z < 3.5
- The ALMA Spectroscopic Survey in the HUDF: Constraining cumulative CO emission at with power spectrum analysis of ASPECS LP data from 84 to 115 GHz
Cited by in corpus (12)
- Line-Intensity Mapping: Theory Review
- Probing Cosmic Reionization and Molecular Gas Growth with TIME
- COMAP Early Science: V. Constraints and Forecasts at
- An Intensity Mapping Constraint on the CO-Galaxy Cross Power Spectrum at Redshift ~ 3
- On estimating the cosmic molecular gas density from CO Line Intensity Mapping observations
- A multi-tracer empirically-driven approach to line-intensity mapping lightcones
- Analysis of spin directions of galaxies in the DESI Legacy Survey
- Analysis of spiral galaxies from four telescopes shows large-scale patterns of asymmetry in galaxy spin directions
- Large-scale asymmetry in galaxy spin directions -- analysis of galaxies with spectra in DES, SDSS, and DESI Legacy Survey
- ALMACAL XIII. Evolution of the CO luminosity function and the molecular gas mass density out to ~ 6
- Far-infrared lines hidden in archival deep multi-wavelength surveys: Limits on [CII]-158m at
- Unveiling the evolution of the CO excitation ladder through cross-correlation of CONCERTO-like experiments and galaxy redshift surveys