English

CO Emission, Molecular Gas, and Metallicity in Main-Sequence Star-Forming Galaxies at $z\sim2.3$

Astrophysics of Galaxies 2023-01-11 v1

Abstract

We present observations of CO(3-2) in 13 main-sequence z=2.02.5z=2.0-2.5 star-forming galaxies at log(M/M)=10.210.6\log(M_*/M_{\odot})=10.2-10.6 that span a wide range in metallicity (O/H) based on rest-optical spectroscopy. We find that CO(3-2)/SFR decreases with decreasing metallicity, implying that the CO luminosity per unit gas mass is lower in low-metallicity galaxies at z2z\sim2. We constrain the CO-to-H2_2 conversion factor (αCO\alpha_{\text{CO}}) and find that αCO\alpha_{\text{CO}} inversely correlates with metallicity at z2z\sim2. We derive molecular gas masses (MmolM_{\text{mol}}) and characterize the relations among MM_*, SFR, MmolM_{\text{mol}}, and metallicity. At z2z\sim2, MmolM_{\text{mol}} increases and molecular gas fraction (MmolM_{\text{mol}}/MM_*) decrease with increasing MM_*, with a significant secondary dependence on SFR. Galaxies at z2z\sim2 lie on a near-linear molecular KS law that is well-described by a constant depletion time of 700 Myr. We find that the scatter about the mean SFR-MM_*, O/H-MM_*, and MmolM_{\text{mol}}-MM_* relations is correlated such that, at fixed MM_*, z2z\sim2 galaxies with larger MmolM_{\text{mol}} have higher SFR and lower O/H. We thus confirm the existence of a fundamental metallicity relation at z2z\sim2 where O/H is inversely correlated with both SFR and MmolM_{\text{mol}} at fixed MM_*. These results suggest that the scatter of the z2z\sim2 star-forming main sequence, mass-metallicity relation, and MmolM_{\text{mol}}-MM_* relation are primarily driven by stochastic variations in gas inflow rates. We place constraints on the mass loading of galactic outflows and perform a metal budget analysis, finding that massive z2z\sim2 star-forming galaxies retain only 30% of metals produced, implying that a large mass of metals resides in the circumgalactic medium.

Keywords

Cite

@article{arxiv.2204.06937,
  title  = {CO Emission, Molecular Gas, and Metallicity in Main-Sequence Star-Forming Galaxies at $z\sim2.3$},
  author = {Ryan L. Sanders and Alice E. Shapley and Tucker Jones and Irene Shivaei and Gergö Popping and Naveen A. Reddy and Romeel Davé and Sedona H. Price and Bahram Mobasher and Mariska Kriek and Alison L. Coil and Brian Siana},
  journal= {arXiv preprint arXiv:2204.06937},
  year   = {2023}
}

Comments

35 pages, 17 figures, submitted to ApJ