Resolved Molecular Gas and Star Formation Properties of the Strongly Lensed z=2.26 Galaxy SDSS J0901+1814
arXiv:1905.09845 · doi:10.3847/1538-4357/ab22b9
Abstract
We present ~1" resolution (~2 kpc in the source plane) observations of the CO(1-0), CO(3-2), Halpha, and [N II] lines in the strongly-lensed z=2.26 star-forming galaxy SDSS J0901+1814. We use these observations to constrain the lensing potential of a foreground group of galaxies, and our source-plane reconstructions indicate that SDSS J0901+1814 is a nearly face-on (i~30 degrees) massive disk with r_{1/2}>~4 kpc for its molecular gas. Using our new magnification factors (mu_tot~30), we find that SDSS J0901+1814 has a star formation rate (SFR) of 268^{+63}_{-61} M_sun/yr, M_gas=(1.6^{+0.3}_{-0.2})x10^11x(alpha_CO/4.6) M_sun, and M_star=(9.5^{+3.8}_{-2.8})x10^10 M_sun, which places it on the star-forming galaxy "main sequence." We use our matched high-angular resolution gas and SFR tracers (CO and Halpha, respectively) to perform a spatially resolved (pixel-by-pixel) analysis of SDSS J0901+1814 in terms of the Schmidt-Kennicutt relation. After correcting for the large fraction of obscured star formation (SFR_Halpha/SFR_TIR=0.054^{+0.015}_{-0.014}), we find SDSS J0901+1814 is offset from "normal" star-forming galaxies to higher star formation efficiencies independent of assumptions for the CO-to-H_2 conversion factor. Our mean best-fit index for the Schmidt-Kennicutt relation for SDSS J0901+1814, evaluated with different CO lines and smoothing levels, is n=1.54+/-0.13; however, the index may be affected by gravitational lensing, and we find n=1.24+/-0.02 when analyzing the source-plane reconstructions. While the Schmidt-Kennicutt index largely appears unaffected by which of the two CO transitions we use to trace the molecular gas, the source-plane reconstructions and dynamical modeling suggest that the CO(1-0) emission is more spatially extended than the CO(3-2) emission.
ApJ accepted; 40 pages, 24 figures, 8 tables
References in corpus (30)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- The rapid formation a large rotating disk galaxy three billion years after the Big Bang
- Ages and metallicities of early-type galaxies in the SDSS: new insight into the physical origin of the colour-magnitude and the Mg2-sigmaV relations
- 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
- Dynamical Properties of z~2 Star Forming Galaxies and a Universal Star Formation Relation
- Evidence for Wide-Spread AGN Driven Outflows in the Most Massive z~1-2 Star Forming Galaxies
- The far-infrared/radio correlation and radio spectral index of galaxies in the SFR-M* plane up to z 2
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- Star formation relations and CO SLEDs across the J-ladder and redshift
- Rest-Frame Optical Spectra of Three Strongly Lensed Galaxies at z~2
- Evidence of enhanced star formation efficiency in luminous and ultraluminous infrared galaxies
- The kiloparsec-scale star formation law at redshift 4: wide-spread, highly efficient star formation in the dust-obscured starburst galaxy GN20
- A Consistent Study of Metallicity Evolution at 0.8 < z < 2.6
- Molecular Star Formation Rate Indicators in Galaxies
- 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
- A Detailed Study of Gas and Star Formation in a Highly Magnified Lyman Break Galaxy at z=3.07
- Star Formation at z=2.481 in the Lensed Galaxy SDSS J1110+6459: Star Formation down to 30 parsec scales
- The Star Formation Rate - Dense Gas Relation in Galaxies as Measured by HCN (3-2) Emission
- VLA imaging of 12CO J=1-0 and free-free emission in lensed submillimetre galaxies
- Statistical and systematic uncertainties in pixel-based source reconstruction algorithms for gravitational lensing
- Herschel Extreme Lensing Line Observations: Dynamics of two strongly lensed star forming galaxies near redshift z = 2