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Photometric Redshifts of Quasars*

机译:类星体的光度红移*

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We demonstrate that the design of the Sloan Digital Sky Survey (SDSS) filter system and the quality of the SDSS imaging data are sufficient for determining accurate and precise photometric redshifts of quasars. Using a sample of 2625 quasars, we show that "photo-z" determination is even possible for z ≤ 2.2 despite the lack of a strong continuum break, which robust photo-z techniques normally require. We find that, using our empirical method on our sample of objects known to be quasars, approximately 70% of the photometric redshifts are correct to within Δz = 0.2; the fraction of correct photometric redshifts is even better for z > 3. The accuracy of quasar photometric redshifts does not appear to be dependent upon magnitude to nearly 21st magnitude in i'. Careful calibration of the color-redshift relation to 21st magnitude may allow for the discovery of ~106 quasar candidates in addition to the 105 quasars that the SDSS will confirm spectroscopically. We discuss the efficient selection of quasar candidates from imaging data for use with the photometric redshift technique and the potential scientific uses of a large sample of quasar candidates with photometric redshifts.
机译:我们证明,斯隆数字天空测量(SDSS)过滤器系统的设计和SDSS成像数据的质量足以确定类星体的准确和精确的光度红移。使用2625个类星体的样本,我们显示,即使z≤2.2,“光子z”的确定甚至是可能的,尽管缺乏强大的光子连续性中断,而鲁棒的光子z技术通常需要这种中断。我们发现,使用我们的经验方法对已知为类星体的物体样本,大约70%的光度红移在Δz= 0.2内是正确的。当z> 3时,正确的光度红移的分数甚至更好。类星体光度红移的精度似乎不依赖于i'中接近21st的大小。仔细校准颜色-红移关系到21st的大小,可能会发现SDSD将在光谱上确认的105个类星体之外的〜106个类星体候选者。我们讨论了从成像数据中有效选择类星体候选对象以用于光度红移技术,以及讨论了具有光度学红移的大量类星体候选者的潜在科学用途。
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