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Constraints on the accuracy of photometric Redshifts derived from BLAST and Herschel/SPIRE sub-mm surveys

机译:对爆炸和尖端/尖峰亚MM调查衍生的光度红移准确性的约束

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More than 150 galaxies have been detected in blank-field millimetre and sub-millimetre surveys. However the redshift distribution of sub-mm galaxies remains uncertain due to the difficulty in identifying their optical-IR counterparts, and subsequently obtaining their spectroscopic emission-line redshifts. In this paper we discuss results from a Monte-Carlo analysis of the accuracy with which one can determine redshifts from photometric measurements at sub-millimetre-FIR wavelengths. The analysis takes into account the dispersion in colours introduced by including galaxies with a distribution of SEDs, and by including photometric and absolute calibration errors associated with real observations. We present examples of the probability distribution of redshifts for individual galaxies detected in the future BLAST and Herschel/SPIRE surveys. We show that the combination of BLAST and 850μm observations constrain the photometric redshifts with sufficient accuracy to pursue a program of spectroscopic follow-up with the 100 m GBT.
机译:在空白场毫米和亚毫米调查中检测到超过150个星系。然而,由于识别其光学IR对应物的困难,并且随后获得它们的光谱排放线红移,亚mm星系的红移分布仍然不确定。在本文中,我们讨论了蒙特-Carlo分析的蒙特卡罗分析,其中可以从亚毫米 - 冷杉波长下从光度测量确定红移。该分析考虑了通过包括SED分布的星系引入的颜色的分散,以及包括与真实观察相关的光度和绝对校准误差。我们提出了在未来爆炸和刺耳/尖顶调查中检测到的单个星系的红移概率分布的例子。我们表明,BLAST和850μm观测的组合限制了具有足够精度的光度红移,以追求100 m GBT的光谱跟进程序。

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