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Early Science with the large millimeter telescope : observations of dust continuum and CO emission lines of cluster-lensed submillimetre galaxies at z=2.0-4.7

机译:大毫米波望远镜的早期科学:在z = 2.0-4.7的团簇透镜亚毫米星系的尘埃连续体和CO发射线的观测

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摘要

We present Early Science observations with the Large Millimeter Telescope, AzTEC 1.1 mm continuum images and wide bandwidth spectra (73–111 GHz) acquired with the Redshift Search Receiver, towards four bright lensed submillimetre galaxies identified through the Herschel Lensing Survey-snapshot and the Submillimetre Common-User Bolometer Array-2 Cluster Snapshot Survey. This pilot project studies the star formation history and the physical properties of the molecular gas and dust content of the highest redshift galaxies identified through the benefits of gravitational magnification. We robustly detect dust continuum emission for the full sample and CO emission lines for three of the targets. We find that one source shows spectroscopic multiplicity and is a blend of three galaxies at different redshifts (z = 2.040, 3.252, and 4.680), reminiscent of previous high-resolution imaging follow-up of unlensed submillimetre galaxies, but with a completely different search method, that confirm recent theoretical predictions of physically unassociated blended galaxies. Identifying the detected lines as 12CO (Jup = 2–5) we derive spectroscopic redshifts, molecular gas masses, and dust masses from the continuum emission. The mean H2 gas mass of the full sample is (2.0 ± 0.2) × 1011 M⊙/μ, and the mean dust mass is (2.0 ± 0.2) × 109 M⊙/μ, where μ ≈ 2–5 is the expected lens amplification. Using these independent estimations we infer a gas-to-dust ratio of δGDR ≈ 55–75, in agreement with other measurements of submillimetre galaxies. Our magnified high-luminosity galaxies fall on the same locus as other high-redshift submillimetre galaxies, extending the L′CO–LFIR correlation observed for local luminous and ultraluminous infrared galaxies to higher far-infrared and CO luminosities.
机译:我们使用大位移望远镜,Redshift Search Receiver采集的AzTEC 1.1毫米连续谱图像和宽带光谱(73–111 GHz),对通过赫歇尔透镜测量快照和亚毫米望远镜确定的四个明亮的亚毫米星系,进行了早期科学观测。通用用户Bolometer Array-2群集快照调查。该先导项目研究了通过引力放大倍数确定的最高红移星系的恒星形成历史以及分子气体和尘埃含量的物理性质。我们稳健地检测了三个目标的全部样品和CO排放线的粉尘连续排放。我们发现,一个来源显示了光谱的多重性,并且是三个不同红移(z = 2.040、3.252和4.680)的三个星系的混合物,让人想起以前对无透镜亚毫米星系进行的高分辨率成像跟踪,但搜索却完全不同。方法,证实了物理上无关的混合星系的最新理论预测。将检测到的线标识为12CO(Jup = 2–5),我们从连续发射中得出光谱红移,分子气体质量和粉尘质量。整个样品的平均H2气体质量为(2.0±0.2)×1011M⊙/μ,平均粉尘质量为(2.0±0.2)×109M⊙/μ,其中μ≈2–5是预期的透镜放大。使用这些独立的估计,我们推断出δGDR≈55-75的气尘比,与亚毫米星系的其他测量结果一致。我们放大的高发光星系与其他高红移亚毫米星系位于同一位置,从而将局部发光和超发光红外星系的L'CO-LFIR相关性扩展到更高的远红外和CO发光度。

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