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Photometric Redshifts in the IRAC Shallow Survey

机译:IRAC浅表调查中的光度红移

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Accurate photometric redshifts are calculated for nearly 200,000 galaxies to a 4.5 μm flux limit of ~13 μJy in the 8.5 deg2 Spitzer IRAC Shallow Survey. Using a hybrid photometric redshift algorithm incorporating both neural net and template-fitting techniques, calibrated with over 15,000 spectroscopic redshifts, a redshift accuracy of σ = 0.06(1 + z) is achieved for 95% of galaxies at 0 z 1.5. The accuracy is σ = 0.12(1 + z) for 95% of active galactic nuclei (AGNs) at 0 z 3. Redshift probability functions, central to several ongoing studies of the galaxy population, are computed for the full sample. We demonstrate that these functions accurately represent the true redshift probability density, allowing the calculation of valid confidence intervals for all objects. These probability functions have already been used to successfully identify a population of Spitzer-selected high-redshift (z 1) galaxy clusters. We present one such spectroscopically confirmed cluster at z = 1.24, ISCS J1434.5+3427. Finally, we present a measurement of the 4.5 μm-selected galaxy redshift distribution.
机译:在8.5度2 Spitzer IRAC浅层调查中,计算了近200,000个星系的精确光度红移,使4.5μm通量极限达到〜13μJy。使用结合了神经网络和模板拟合技术的混合光度红移算法,并用超过15,000个光谱红移进行了校准,对于95%的星系,在0 1)星系团。我们在z = 1.24处通过ISCS J1434.5 + 3427给出了一个这样的光谱确认簇。最后,我们介绍了4.5μm选定星系红移分布的测量结果。
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