论文标题

下一代调查的光度红移

Photometric Redshifts for Next-Generation Surveys

论文作者

Newman, Jeffrey A., Gruen, Daniel

论文摘要

光度红移在研究星系进化和宇宙学的研究中至关重要,因为它们可以分析过多或微弱的对象。鲁宾天文台,欧几里得和罗马空间望远镜将很快提供新一代的成像调查,并具有前所未有的区域覆盖范围,波长范围和深度。为了充分利用这些数据集,需要进一步的光度红移方法进展。在这篇综述中,我们关注的是最大的共同挑战和前景,以改善照片对下一代调查的申请:$ z $: - $性能$的收益 - 即,单个星系的红移估算的精度 - 可以大大增强对星系进化和一些宇宙学探针的研究。 - $表征的改进$ - 即,在下一代调查中,紧急需要进行宇宙学测量,因此,在单个红移不确定性的情况下,在存在不确定性的情况下,红移$分布的准确恢复了星系的准确恢复。 - 为了实现这两个目标,还需要需要改善光谱红移样品的范围和处理,这些红色转移的样品也将是可能的。 为了使下一代调查的全部潜力与当前的最新状态相比,红移分布的表征将需要大约提高数量级,这需要在各种方面进行进展。最后,我们通过提出对光度红移方法和必要光谱样品的收集的投机评估,可以在近乎未来的调查完成时改善。

Photometric redshifts are essential in studies of both galaxy evolution and cosmology, as they enable analyses of objects too numerous or faint for spectroscopy. The Rubin Observatory, Euclid, and Roman Space Telescope will soon provide a new generation of imaging surveys with unprecedented area coverage, wavelength range, and depth. To take full advantage of these datasets, further progress in photometric redshift methods is needed. In this review, we focus on the greatest common challenges and prospects for improvement in applications of photo-$z$'s to the next generation of surveys: - Gains in $performance$ -- i.e., the precision of redshift estimates for individual galaxies -- could greatly enhance studies of galaxy evolution and some probes of cosmology. - Improvements in $characterization$ -- i.e., the accurate recovery of redshift $distributions$ of galaxies in the presence of uncertainty on individual redshifts -- are urgently needed for cosmological measurements with next-generation surveys. - To achieve both of these goals, improvements in the scope and treatment of the samples of spectroscopic redshifts which make high-fidelity photo-$z$'s possible will also be needed. For the full potential of the next generation of surveys to be reached, the characterization of redshift distributions will need to improve by roughly an order of magnitude compared to the current state of the art, requiring progress on a wide variety of fronts. We conclude by presenting a speculative evaluation of how photometric redshift methods and the collection of the necessary spectroscopic samples may improve by the time near-future surveys are completed.

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