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A molecular scan in the Hubble Deep Field North

机译:哈勃深场北方的分子扫描

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Our understanding of galaxy evolution has traditionally been driven by pre-selection of galaxies based on their broad-band continuum emission. This approach is potentially biased, in particular against gas-rich systems at high-redshift which may be dust-obscured. To overcome this limitation, we have recently concluded a blind CO survey at 3mm in a region of the Hubble Deep Field North using the IRAM Plateau de Bure Interferometer. Our study resulted in 1) the discovery of the redshift of the bright SMG HDF850.1 (z = 5.183); 2) the discovery of a bright line identified as CO(2-1) arising from a BzK galaxy at z = 1.785, and of other 6 CO lines associated with various galaxies in the field; 3) the detection of a few lines (presumably CO(3-2) at z ~ 2) with no optical/NIR/MIR counterparts. These observational results allowed us to expand the parameter space of galaxy properties probed so far in high-z molecular gas studies. Most importantly, we could set first direct constraints on the cosmic evolution of the molecular gas content of the universe. The present study represents a first, fundamental step towards an unbiased census of molecular gas in 'normal' galaxies at high-z, a crucial goal of extragalactic astronomy in the ALMA era.
机译:我们对Galaxy Evolution的理解传统上是通过基于宽带连续发射的星系预选而导致的。这种方法可能偏向,特别是在高射频处的富含气体的系统,这可能是灰尘模糊的。为了克服这一限制,我们最近使用伊兰平原De Bure干涉仪在哈勃深田地区的3毫米中致盲CO调查。我们的研究导致了1)发现明亮SMG HDF850.1的红移(Z = 5.183); 2)发现鉴定为Z = 1.785的BZK Galaxy产生的CO(2-1)的明亮线,以及与该领域中各种星系相关的其他6个CO线; 3)检测少量(Z〜2)的少量(尺寸CO(3-2),没有光学/鼻腔/ MIR对应物。这些观察结果使我们能够扩展到目前为止在高Z分子气体研究中探测的Galaxy性能的参数空间。最重要的是,我们可以对宇宙的分子气体含量的宇宙演变进行首次直接限制。本研究代表了在高Z处于“正常”星系中的“正常”星系中的分子气体普查的首先基本步骤,是Alma时代丙型天文学的关键目标。

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