论文标题

在$ z \ sim2.3 $的主要序列星系中,在恒星形成星系中的CO排放,分子气和金属性

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

论文作者

Sanders, Ryan L., Shapley, Alice E., Jones, Tucker, Shivaei, Irene, Popping, Gergö, Reddy, Naveen A., Davé, Romeel, Price, Sedona H., Mobasher, Bahram, Kriek, Mariska, Coil, Alison L., Siana, Brian

论文摘要

我们在13个主序列中介绍了CO(3-2)的观察结果$ z = 2.0-2.5 $ $ \ log(m _*/m _ {\ odot})= 10.2-10.6 $,基于休息光谱镜检查。我们发现CO(3-2)/SFR会随着金属性的降低而降低,这意味着在$ Z \ SIM2 $的低金属星系中,单位气体质量的CO光度较低。我们限制了Co-to-H $ _2 $转换因子($α_ {\ text {co}} $),并找到$α_ {\ text {co}} $与金属性相关的$ z \ sim2 $。我们得出分子气体($ m _ {\ text {mol}} $),并表征$ m _*$,sfr,$ m _ {\ text {mol}} $和金属性之间的关系。在$ z \ sim2 $,$ m _ {\ text {mol}} $增加和分子气体分数($ m _ {\ text {mol}} $/$ m _*$)随着$ m _*$的增加而减少,对SFR具有显着的中等依赖性。 $ z \ sim2 $的星系在于近乎线性的分子ks法律,该法律由700 MYR的恒定耗竭时间很好地描述。我们发现,平均sfr- $ m _*$,o/h- $ m _*$和$ m _ {\ text {mol}} $ - $ m _*$关系的散布是相关的因此,我们在$ z \ sim2 $中确认存在基本金属关系的存在,其中o/h与sfr和$ m _ {\ text {mol}} $呈固定的$ m _*$成反比。这些结果表明,$ z \ sim2 $ star形成的主要序列,质量金属关系和$ m _ {\ text {mol}} $ - $ m _*$关系主要是由气体流入率的随机变化驱动的。我们对银河流出的质量负荷放置并进行金属预算分析,发现巨大的$ z \ sim2 $恒星形成星系仅保留了生产的金属的30%,这意味着大量金属居住在边缘培养基中。

We present observations of CO(3-2) in 13 main-sequence $z=2.0-2.5$ star-forming galaxies at $\log(M_*/M_{\odot})=10.2-10.6$ 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 $z\sim2$. We constrain the CO-to-H$_2$ conversion factor ($α_{\text{CO}}$) and find that $α_{\text{CO}}$ inversely correlates with metallicity at $z\sim2$. We derive molecular gas masses ($M_{\text{mol}}$) and characterize the relations among $M_*$, SFR, $M_{\text{mol}}$, and metallicity. At $z\sim2$, $M_{\text{mol}}$ increases and molecular gas fraction ($M_{\text{mol}}$/$M_*$) decrease with increasing $M_*$, with a significant secondary dependence on SFR. Galaxies at $z\sim2$ 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-$M_*$, O/H-$M_*$, and $M_{\text{mol}}$-$M_*$ relations is correlated such that, at fixed $M_*$, $z\sim2$ galaxies with larger $M_{\text{mol}}$ have higher SFR and lower O/H. We thus confirm the existence of a fundamental metallicity relation at $z\sim2$ where O/H is inversely correlated with both SFR and $M_{\text{mol}}$ at fixed $M_*$. These results suggest that the scatter of the $z\sim2$ star-forming main sequence, mass-metallicity relation, and $M_{\text{mol}}$-$M_*$ 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 $z\sim2$ star-forming galaxies retain only 30% of metals produced, implying that a large mass of metals resides in the circumgalactic medium.

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