首页> 外文期刊>The Astrophysical Journal. Letters >REST-FRAME OPTICAL EMISSION LINES IN FAR-INFRARED-SELECTED GALAXIES AT z < 1.7 FROM THE FMOS-COSMOS SURVEY
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REST-FRAME OPTICAL EMISSION LINES IN FAR-INFRARED-SELECTED GALAXIES AT z < 1.7 FROM THE FMOS-COSMOS SURVEY

机译:来自FMOS-COSMOS调查的z <1.7的远红外选择星系中的静止帧光学发射线

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摘要

We have used FMOS on Subaru to obtain near-infrared spectroscopy of 123 far-infrared-selected galaxies in COSMOS and the key rest-frame optical emission lines. This is the largest sample of infrared galaxies with near-infrared spectroscopy at these redshifts. The far-infrared selection results in a sample of galaxies that are massive systems that span a range of metallicities in comparison with previous optically selected surveys, and thus has a higher active galactic nucleus (AGN) fraction and better samples the AGN branch. We establish the presence of AGNs and starbursts in this sample of (U)LIRGs selected as Herschel-PACS and Spitzer-MIPS detections in two redshift bins (z similar to 0.7 and z similar to 1.5) and test the redshift dependence of diagnostics used to separate AGNs from star formation dominated galaxies. In addition, we construct a low-redshift (z similar to 0.1) comparison sample of infrared-selected galaxies and find that the evolution from z similar to 1.5 to today is consistent with an evolving AGN selection line and a range of ISM conditions and metallicities from the models of Kewley et al. We find that a large fraction of (U)LIRGs are BPT-selected AGNs using their new redshift-dependent classification line. We compare the position of known X-ray-detected AGNs (67 in total) with the BPT selection and find that the new classification line accurately selects most of these objects (>70%). Furthermore, we identify 35 new (likely obscured) AGNs not selected as such by their X-ray emission. Our results have direct implications for AGN selection at higher redshift with either current (MOSFIRE, KMOS) or future (PFS, MOONS) spectroscopic efforts with near-infrared spectral coverage.
机译:我们已在斯巴鲁上使用FMOS来获得COSMOS和关键静止框架光发射线中123个远红外选择星系的近红外光谱。这是在这些红移时具有近红外光谱的红外星系的最大样本。远红外选择会生成一个星系样本,该星系样本是与以前的光学选择勘测相比跨越一定金属范围的大规模系统的星系,因此具有较高的活动银河核(AGN)分数,并且可以对AGN分支进行更好的采样。我们在被选作Herschel-PACS和Spitzer-MIPS检测的(U)LIRGs样本中,在两个红移区(z类似于0.7和z类似于1.5)中建立了AGN和星爆的存在,并测试了用于诊断的红移依赖性将AGN与以恒星形成为主的星系分开。此外,我们构建了一个红外选择星系的低红移(z近似于0.1)比较样本,发现从z近似于1.5到今天的演化与不断发展的AGN选择线以及一系列ISM条件和金属性是一致的根据Kewley等人的模型。我们发现,使用它们新的依赖于红移的分类线,很大一部分(U)LIRGs是BPT选择的AGN。我们将已知的X射线检测AGN的位置(总共67个)与BPT选择进行了比较,发现新的分类线准确地选择了大多数这些对象(> 70%)。此外,我们确定了35个新的(可能被遮盖的)AGN未通过其X射线发射被选中。我们的结果直接影响了使用当前(MOSFIRE,KMOS)或未来(PFS,MOONS)光谱工作并具有近红外光谱覆盖范围的更高红移下的AGN选择。

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