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首页> 外文期刊>The Astrophysical journal >USING GALAXY TWO-POINT CORRELATION FUNCTIONS TO DETERMINE THE REDSHIFT DISTRIBUTIONS OF GALAXIES BINNED BY PHOTOMETRIC REDSHIFT
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USING GALAXY TWO-POINT CORRELATION FUNCTIONS TO DETERMINE THE REDSHIFT DISTRIBUTIONS OF GALAXIES BINNED BY PHOTOMETRIC REDSHIFT

机译:使用银河两点相关函数确定分光光度法平移的星系的红移分布

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We investigate how well the redshift distributions of galaxies sorted into photometric redshift bins can be determined from the galaxy angular two-point correlation functions. We find that the uncertainty in the reconstructed redshift distributions depends critically on the number of parameters used in each redshift bin and the range of angular scales used, but not on the number of photometric redshift bins. Using six parameters for each photometric redshift bin, and restricting ourselves to angular scales over which the galaxy number counts are normally distributed, we find that errors in the reconstructed redshift distributions are large; i.e., they would be the dominant source of uncertainty in cosmological parameters estimated from otherwise ideal weak lensing or baryon acoustic oscillation data. However, either by reducing the number of free parameters in each redshift bin or by (unjustifiably) applying our Gaussian analysis into the non-Gaussian regime, we find that the correlation functions can be used to reconstruct the redshift distributions with moderate precision; e.g., with mean redshifts determined to ~0.01. We also find that dividing the galaxies into two spectral types, thereby doubling the number of redshift distribution parameters, can result in a reduction in the errors in the combined redshift distributions.
机译:我们研究了如何从星系角两点相关函数确定分拣到光度红移区中的星系的红移分布。我们发现,重构的红移分布中的不确定性主要取决于每个红移仓中使用的参数数量和所使用的角度范围,而不取决于光度红移仓的数量。对每个测光红移区使用六个参数,并将自己限制在银河系数计数正态分布的角度范围内,我们发现重建的红移分布中的误差很大。也就是说,它们将是根据理想的弱透镜或重子声振荡数据估算出的宇宙学参数不确定性的主要来源。然而,通过减少每个红移区中自由参数的数量,或者通过(不合理地)将我们的高斯分析应用于非高斯状态,我们发现相关函数可以用于以中等精度重建红移分布;例如,平均红移确定为〜0.01。我们还发现,将星系分为两种光谱类型,从而使红移分布参数的数量加倍,可以减少组合红移分布中的误差。

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