论文标题

对高红移星系星系的分子气体特性的ALMA/NOEMA调查

An ALMA/NOEMA survey of the molecular gas properties of high-redshift star-forming galaxies

论文作者

Birkin, Jack E., Weiss, Axel, Wardlow, J. L., Smail, Ian, Swinbank, A. M., Dudzevičiūtė, U., An, Fang Xia, Ao, Y., Chapman, S. C., Chen, Chian-Chou, da Cunha, E., Dannerbauer, H., Gullberg, B., Hodge, J. A., Ikarashi, S., Ivison, R. J., Matsuda, Y., Stach, S. M., Walter, F., Wang, W. -H, van der Werf, P.

论文摘要

我们使用Atacama大毫米阵列(Alma)和北部的扩展米(Noema),对从870美元的宇宙,UDS和ECDFS磁场进行了61个亚毫米仪星系(SMG)(SMG)进行了调查。 46 $^{12} $ co($ j = $ 2-5)在45个目标中检测到$ z = $ 1.2-4.8的目标,红移表明那些在较高的红品上梯度,在较高的红shift中均为光明/未发现/昏迷的闪光/昏暗的$Δz/ΔS_{870} = $ 0.11 $ \ pm $ 0.04mjy $^{ - 1} $。我们还用文献来源补充了我们的数据,以构建统计CO频谱线的能量分布,并在SMGS Peak中找到$^{12} $ CO线的发光度,$ J _ {\ rm up} \ sim $ 6,与宇宙睫毛一致。我们的SMG主要位于主序列上或正上方,显示出其气体消耗时间尺度$ t _ {\ rm dep} = m _ {\ rm als as}/{\ rm as a}/{\ rm sfr} $,redshift in RefShift in Range $ z \ sim $ 1-5和200美元的$ z $ \ ks $ 50m $ Z $ Z $ Z $ Z $ Z $ Z $ Z $ 50m $ \ 2.8。这与分子气体分数的增加$μ_ {\ rm Gas} = M _ {\ rm Gas}/m_ \ ast $在相同的红移范围内。最后,我们证明了$ m _ {\ rm baryon} $ - $σ$我们的SMG的分布与昏迷集群中的早期型星系一致,这为SMG是大型局部球形星系的祖细胞提供了强有力的支持。在此基础上,我们建议SMG种群上方和低于870- $ $ M $ M M的通量限制为$ S_ {870} \ SIM $ 5MJY可能对应于本地早期型星系中慢速和快速移动器之间的分裂。

We present a survey of the molecular gas in 61 submillimetre galaxies (SMGs) selected from 870$μ$m continuum surveys of the COSMOS, UDS and ECDFS fields, using the Atacama Large Millimeter Array (ALMA) and the Northern Extended Millimeter Array (NOEMA). 46 $^{12}$CO ($J=$2-5) emission lines are detected in 45 of the targets at $z=$1.2-4.8, with redshifts indicating that those which are submillimetre bright and undetected/faint in the optical/near-infrared typically lie at higher redshifts, with a gradient of $Δz/ΔS_{870}=$0.11$\pm$0.04mJy$^{-1}$. We also supplement our data with literature sources to construct a statistical CO spectral line energy distribution and find the $^{12}$CO line luminosities in SMGs peak at $J_{\rm up}\sim$6, consistent with the Cosmic Eyelash, among similar studies. Our SMGs lie mostly on or just above the main sequence, displaying a decrease in their gas depletion timescales $t_{\rm dep} = M_{\rm gas}/{\rm SFR}$ with redshift in the range $z\sim$1-5 and a median of 200$\pm$50Myr at $z\sim$2.8. This coincides with an increase in molecular gas fraction $μ_{\rm gas} = M_{\rm gas}/M_\ast$ across the same redshift range. Finally we demonstrate that the $M_{\rm baryon}$-$σ$ distribution of our SMGs is consistent with that followed by early-type galaxies in the Coma cluster, providing strong support to the suggestion that SMGs are progenitors of massive local spheroidal galaxies. On the basis of this we suggest that the SMG populations above and below an 870-$μ$m flux limit of $S_{870}\sim$5mJy may correspond to the division between slow- and fast-rotators seen in local early-type galaxies.

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