Molecular gas in a gravitationally lensed galaxy group at
arXiv:2105.11572 · doi:10.3847/1538-4357/ac0435
Abstract
Most molecular gas studies of galaxies are of intrinsically bright objects, despite the galaxy population being primarily "normal" galaxies with less extreme star formation rates. Observations of normal galaxies at high redshift provide a more representative view of galaxy evolution and star formation, but such observations are challenging to obtain. In this work, we present ALMA observations of a sub-millimeter selected galaxy group at , resulting in spectroscopic confirmation of seven images from four member galaxies. These galaxies are strongly lensed by the MS 0451.6-0305 foreground cluster at , allowing us to probe the molecular gas content on levels of . Four detected galaxies have molecular gas masses of , and the non-detected galaxies have inferred molecular gas masses of . We compare these new data to a compilation of 546 galaxies up to , and find that depletion times decrease with increasing redshift. We then compare the depletion times of galaxies in overdense environments to the field scaling relation from the literature, and find that the depletion time evolution is steeper for galaxies in overdense environments than for those in the field. More molecular gas measurements of normal galaxies in overdense environments at higher redshifts () are needed to verify the environmental dependence of star formation and gas depletion.
20 pages, 8 figures, 5 tables. Accepted for publication in ApJ
References in corpus (21)
- Array Programming with NumPy
- Cosmic Star Formation History
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- Bayesian Strong Gravitational-Lens Modeling on Adaptive Grids: Objective Detection of Mass Substructure in Galaxies
- CO excitation of normal star forming galaxies out to z=1.5 as regulated by the properties of their interstellar medium
- The DEEP2 Galaxy Redshift Survey: The Role of Galaxy Environment in the Cosmic Star-Formation History
- A Massive Molecular Gas Reservoir in the z=5.3 Submillimeter Galaxy AzTEC-3
- Molecular gas content in strongly-lensed z~1.5-3 star-forming galaxies with low IR luminosities
- A Detailed Study of Gas and Star Formation in a Highly Magnified Lyman Break Galaxy at z=3.07
- ALMA Observations of Gas-Rich Galaxies in z~1.6 Galaxy Clusters: Evidence for Higher Gas Fractions in High-Density Environments
- A Far-Infrared Spectroscopic Survey of Intermediate Redshift (Ultra) Luminous Infrared Galaxies
- Deep CO(1-0) Observations of z=1.62 Cluster Galaxies with Substantial Molecular Gas Reservoirs and Normal Star Formation Efficiencies
- Confirming Herschel candidate protoclusters from ALMA/VLA CO observations
- The final data release of ALLSMOG: a survey of CO in typical local low-M* star-forming galaxies
- Environmental impacts on molecular gas in protocluster galaxies at z~2
- On the Gas Content, Star Formation Efficiency, and Environmental Quenching of Massive Galaxies in Proto-Clusters at z~2.0-2.5
- A radio-to-mm census of star-forming galaxies in protocluster 4C23.56 at z=2.5 : Gas mass and its fraction revealed with ALMA
- Full Lensing Analysis of Abell 1703: Comparison of Independent Lens-Modelling Techniques
- The evolution of galaxy star formation activity in massive halos
- A hyper luminous starburst at z=4.72 magnified by a lensing galaxy pair at z=1.48
- Highly-magnified, Multiply-imaged radio counterparts of the Sub-mm Starburst Emission in the Cluster-Lens MS0451.6-0305