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首页> 外文期刊>The Astrophysical journal >MAMBO 1.2 mm OBSERVATIONS OF BzK-SELECTED STAR-FORMING GALAXIES AT z ~ 2
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MAMBO 1.2 mm OBSERVATIONS OF BzK-SELECTED STAR-FORMING GALAXIES AT z ~ 2

机译:MAMBO在z〜2时BzK选定星系星系的观测值1.2毫米

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摘要

We present MAMBO 1.2 mm observations of five BzK-preselected vigorous starburst galaxies at z ~ 2. Two of these were detected at more than 99.5% confidence levels, with 1.2 mm fluxes around 1.5 mJy. These millimeter fluxes imply vigorous activity with star formation rates (SFRs) of ≈500-1500 solar mass yr~(-1), which were also confirmed by detections at 24 μm with the Multiband Imaging Photometer on Spitzer (MIPS). The two detected galaxies are the ones in the sample with the highest SFRs estimated from the rest-frame UV, and their far-IR-derived and UV-derived SFRs agree reasonably well. This is different from local ultraluminous infrared galaxies (ULIRGs) and high-z submillimeter/millimeter-selected galaxies, for which the UV is reported to underestimate SFRs by factors of 10-100, but similar to the average BzK ULIRG at z ~ 2. The two galaxies detected at 1.2 mm are brighter in K than the typical NIR counterparts of MAMBO and SCUBA sources, implying a significantly different K-band-to-submillimeter/millimeter flux ratio as well. This suggests a scenario in which z ~ 2 galaxies, after their rapid (sub)millimeter-bright phase that is opaque to optical/UV light, evolve into a longer lasting phase of K-band-bright and massive objects. Targeting the most UV-active BzK galaxies could yield substantial detection rates at submillimeter/millimeter wavelengths.
机译:我们在z〜2处对5个BzK预选的充满活力的星爆星系进行MAMBO 1.2 mm观测,观测到的其中两个星系的置信度超过99.5%,在1.5 mJy处的1.2 mm通量。这些毫米通量意味着星体形成速率(SFR)约为500-1500太阳质量yr〜(-1)时具有强烈的活动性,这也由Spitzer上的多波段成像光度计(MIPS)在24μm处的探测得到了证实。根据静止帧紫外线估计,两个检测到的星系是样本中具有最高SFR的星系,它们的远红外派生和紫外线派生的SFR相当吻合。这与当地的超发光红外星系(ULIRG)和高z亚毫米/毫米选择星系不同,后者据报道UV会低估SFR 10-10倍,但与z〜2时的平均BzK ULIRG相似。在1.2 mm处检测到的两个星系在K上比MAMBO和SCUBA源的典型NIR对应星亮,这也意味着K波段与亚毫米/毫米通量之比也存在显着差异。这表明z〜2个星系在其对光/ UV光不透明的快速(亚)毫米明亮阶段之后演变成K波段明亮大块物体的持久阶段。瞄准最具紫外线活性的BzK星系可以在亚毫米/毫米波长处产生可观的检测率。

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