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Characterizing elusive, faint dusty star-forming galaxies: a lensed, optically undetected ALMA galaxy at z?~?3.3

机译:描绘难以捉摸的,微弱的尘埃状星状星系:在z?〜?3.3处有透镜的,光学上未检测到的ALMA星系

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We present the serendipitous ALMA detection of a faint submillimeter galaxy (SMG) lensed by a foreground z ~ 1 galaxy. By optimizing the source detection to deblend the system, we accurately build the full spectral energy distribution of the distant galaxy from the I814 band to radio wavelengths. It is extremely red, with a I ? K colour larger than 2.5. We estimate a photometric redshift of 3.28 and determine the physical parameters. The distant galaxy turns out to be magnified by the foreground lens by a factor of ~ 1.5, which implies an intrinsic K _(s) -band magnitude of ~ 24.5, a submillimeter flux at 870 μ m of ~ 2.5 mJy and a SFR of ~ 150?300 M _(⊙)/ yr , depending on the adopted tracer. These values place our source towards the faint end of the distribution of observed SMGs, and in particular among the still few faint SMGs with a fully characterized spectral energy distribution, which allows us not only to accurately estimate its redshift, but also to measure its stellar mass and other physical properties. The galaxy studied in this work is a representative of the population of faint SMGs, of which only few objects are known to date, that are undetected in optical and therefore are not typically accounted for when measuring the cosmic star formation history (SFH). This faint galaxy population thus likely represents an important and missing piece in our understanding of the cosmic SFH. Its observation and characterization is of major importance to achieve a solid picture of galaxy evolution.
机译:我们提出了由前景z〜1星系构成的微弱亚毫米星系(SMG)的偶然ALMA检测。通过优化源探测以使系统模糊,我们可以准确地建立从I814波段到无线电波长的遥远星系的完整光谱能量分布。它非常红,带有I? K颜色大于2.5。我们估计光度红移为3.28,并确定物理参数。遥远的星系被前景镜头放大了约1.5倍,这意味着固有的K _(s)-带幅度约为24.5,在870μm处的亚毫米通量约为2.5 mJy,SFR为。 〜150?300 M _(⊙)/年,具体取决于所采用的示踪剂。这些值将我们的来源推向观察到的SMG分布的微弱终点,尤其是在光谱能量分布完全表征的仍然很少的SMG中,这不仅使我们能够准确地估计其红移,而且能够测量其恒星质量和其他物理性质。在这项工作中研究的银河系代表了微弱的SMG的代表,迄今为止,只有很少的物体在光学上未被发现,因此在测量宇宙星形成历史(SFH)时通常不予考虑。因此,在我们对宇宙SFH的理解中,这种微弱的星系人口很可能代表了重要而又缺失的部分。它的观察和表征对于获得完整的银河系演化图至关重要。

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