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Redshift Distribution and Luminosity Functions of Obscured and Unobscured Quasars

机译:遮挡和视野开阔的Quasars的红移分布和发光度函数

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We have undertaken a spectroscopic survey of luminous AGNs and quasars selected in the mid-infrared from Spitzer IRAC surveys. Mid-infrared selection is much less biased with respect to obscuration than optical techniques, and hence enables the discovery of obscured quasars as well as normal, unobscured ones. Our survey is designed to include brighter 24 micron sources over wider areas and also to go to much lower fluxes limits in more limited spatial regions to allow us to disentangle dependences on redshift and luminosity. We have used 4m class telescopes to obtain spectra of the brighter 24 micron targets (targeting high luminosity objects at low z), and 8m class telescopes to identify lower luminosity high-redshift obscured quasars by targeting the fainter 24 micron targets. Fron this survey we have been able to compile a statistically complete sample of ~ 500 AGN, both obscured and unobscured, over a large range of redshift and luminosity. We find that obscured objects outnumber unobscured AGN with an obscured fraction ranging from ~90% to ~50%. For the most luminous quasars, the number densities of unobscured quasars peaks at z ~ 2.8, and for the obscured objects, the peak may be at slightly higher redshift.
机译:我们已经开展了在Spitzer IRAC调查中红外线中选择的发光AGNS和Quasars的光谱调查。与光学技术相比,中红外选择的偏置程度远低得多,因此可以发现模糊的类星体以及正常,视野开阔的掩蔽。我们的调查旨在包括更广泛的区域更明亮的24微米源,并且还可以在更有限的空间区域中获得更低的势次限制,以便我们解开依赖于红移和亮度的依赖性。我们已经使用了4M级望远镜来获得更亮24微米靶标的光谱(靶向低Z),8M级望远镜通过瞄准较弱的24微米靶标来识别下亮度高射频遮挡的类星体。 FRON这项调查我们已经能够编制统计上完整的〜500年AGN的样本,既遮挡和视野,在大量的红移和亮度范围内。我们发现想个办法视野开阔AGN是模糊的对象与被遮挡的部分,从〜90%至〜50%。对于最透明的Quasars,Z〜2.8处的视野开阔的Quasars峰值的数量密度,并且对于模糊物体,峰值可能略高于略高的红移。

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