首页> 外文期刊>The Astrophysical Journal. Letters >ALMA Shows that Gas Reservoirs of Star-forming Disks over the Past 3 Billion Years Are Not Predominantly Molecular
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ALMA Shows that Gas Reservoirs of Star-forming Disks over the Past 3 Billion Years Are Not Predominantly Molecular

机译:Alma表明过去30亿年过去的星形磁盘的气体储层绝不是分子

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Cold hydrogen gas is the raw fuel for star formation in galaxies, and its partition into atomic and molecular phases is a key quantity for galaxy evolution. In this Letter, we combine Atacama Large Millimeter/submillimeter Array and Arecibo single-dish observations to estimate the molecular-to-atomic hydrogen mass ratio for massive star-forming galaxies at z ~ 0.2 extracted from the HIGHz survey, i.e., some of the most massive gas-rich systems currently known. We show that the balance between atomic and molecular hydrogen in these galaxies is similar to that of local main-sequence disks, implying that atomic hydrogen has been dominating the cold gas mass budget of star-forming galaxies for at least the past three billion years. In addition, despite harboring gas reservoirs that are more typical of objects at the cosmic noon, HIGHz galaxies host regular rotating disks with low gas velocity dispersions suggesting that high total gas fractions do not necessarily drive high turbulence in the interstellar medium.
机译:冷氢气是星系中星形形成的原料燃料,其分析原子和分子相是银河系的键量。在这封信中,我们将Atacama大毫米/亚峰值阵列和areCibo单碟观察结合起来,以估计来自Highz调查中提取的Z〜0.2的大规模星形星系的分子对原子氢质量比,即一些目前已知最巨大的富含气体系统。我们表明,这些星系中的原子和分子氢之间的平衡与局部主序盘的平衡相似,这意味着原子氢已经在过去的三十亿年中占据了星形星系的冷气体质量预算。此外,尽管含有宇宙中午更典型的物体的气体储层,但Highz Galaxies宿主具有常规旋转盘,具有低气体速度分散体,表明高总气体级分不一定在星际介质中驱动高湍流。

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