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首页> 外文期刊>The Astrophysical journal >A GENERAL STUDY OF THE INFLUENCE OF CATASTROPHIC PHOTOMETRIC REDSHIFT ERRORS ON COSMOLOGY WITH COSMIC SHEAR TOMOGRAPHY
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A GENERAL STUDY OF THE INFLUENCE OF CATASTROPHIC PHOTOMETRIC REDSHIFT ERRORS ON COSMOLOGY WITH COSMIC SHEAR TOMOGRAPHY

机译:宇宙剪切断层摄影术对光动力学红移误差对宇宙学的影响的一般研究

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摘要

A goal of forthcoming imaging surveys is to use weak gravitational lensing shear measurements to constrain dark energy. A challenge to this program is that redshifts to the lensed, source galaxies must be determined using photometric, rather than spectroscopic, information. We quantify the importance of uncalibrated photometric redshift outliers to the dark energy goals of forthcoming imaging surveys in a manner that does not assume any particular photometric redshift technique or template. In so doing, we provide an approximate blueprint for computing the influence of specific outlier populations on dark energy constraints. We find that outlier populations whose photo-z distributions are tightly localized about a significantly biased redshift must be controlled to a per-galaxy rate of (1-3) × 10–3 to insure that systematic errors on dark energy parameters are rendered negligible. In the complementary limit, a subset of imaged galaxies with uncalibrated photometric redshifts distributed over a broad range must be limited to fewer than a per-galaxy error rate of F cat (2-4) × 10–4. Additionally, we explore the relative importance of calibrating the photo-z's of a core set of relatively well-understood galaxies as compared to the need to identify potential catastrophic photo-z outliers. We discuss the degradation of the statistical constraints on dark energy parameters induced by excising source galaxies at high- and low-photometric redshifts, concluding that removing galaxies with photometric redshifts z ph 2.4 and z ph 0.3 may mitigate damaging catastrophic redshift outliers at a relatively small (20%) cost in statistical error. In an Appendix, we show that forecasts for the degradation in dark energy parameter constraints due to uncertain photometric redshifts depend sensitively on the treatment of the nonlinear matter power spectrum. In particular, previous work using Peacock & Dodds may have overestimated the photo-z calibration requirements of future surveys.
机译:即将进行的成像调查的目标是使用弱引力透镜剪切测量来约束暗能量。该程序的挑战在于,必须使用光度信息而非光谱信息来确定向透镜源星系的红移。我们以不假定任何特定光度红移技术或模板的方式,量化了未校准的光度红移离群值对即将进行的成像调查的暗能量目标的重要性。这样,我们提供了一个近似的蓝图,用于计算特定离群种群对暗能量约束的影响。我们发现,必须将其光-z分布严格定位在明显偏向红移附近的离群种群的每个星系速率控制为(1-3)×10–3,以确保对暗能量参数的系统误差可以忽略不计。在互补极限中,必须将未校准光度红移分布在较大范围内的成像星系子集限制为小于每个星系的错误率F cat(2-4)×10–4。此外,与确定潜在灾难性的光子z离群值的需求相比,我们探讨了校准一组相对容易理解的星系的光子z的相对重要性。我们讨论了在高光度和低光度红移下切除源星系所引起的暗能量参数统计约束的退化,得出结论:用光度红移z ph 2.4和z ph 0.3去除星系可以减轻相对较小的破坏性灾难性红移离群值(20%)的统计误差成本。在附录中,我们显示了由于不确定的光度红移而导致的暗能量参数约束退化的预测敏感地取决于对非线性物质功率谱的处理。特别是,以前使用孔雀和多德(Peacock&Dodds)的工作可能高估了未来调查的photo-z校准要求。

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