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The first-year shear catalog of the Subaru Hyper Suprime-Cam Subaru Strategic Program Survey

机译:斯巴鲁Hyper Suprime-Cam斯巴鲁战略计划调查的第一年剪切目录

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We present and characterize the catalog of galaxy shape measurements that will be used for cosmological weak lensing measurements in the Wide layer of the first year of the Hyper Suprime-Cam (HSC) survey. The catalog covers an area of 136.9?deg2 split into six fields, with a mean i-band seeing of 0|${^{primeprime}_{.}}$|58 and 5σ point-source depth of i?~?26. Given conservative galaxy selection criteria for first-year science, the depth and excellent image quality results in unweighted and weighted source number densities of 24.6 and 21.8?arcmin?2, respectively. We define the requirements for cosmological weak lensing science with this catalog, then focus on characterizing potential systematics in the catalog using a series of internal null tests for problems with point-spread function (PSF) modeling, shear estimation, and other aspects of the image processing. We find that the PSF models narrowly meet requirements for weak lensing science with this catalog, with fractional PSF model size residuals of approximately 0.003 (requirement: 0.004) and the PSF model shape correlation function ρ1??3?×?10?7 (requirement: 4?×?10?7) at 0|${^{circ}_{.}}$|5 scales. A variety of galaxy shape-related null tests are statistically consistent with zero, but star–galaxy shape correlations reveal additive systematics on 1° scales that are sufficiently large as to require mitigation in cosmic shear measurements. Finally, we discuss the dominant systematics and the planned algorithmic changes to reduce them in future data reductions.
机译:我们介绍并表征星系形状测量的目录,这些目录将用于超级Suprime-Cam(HSC)调查的第一年的宽层中的宇宙学弱透镜测量。该目录覆盖136.9?deg2的区域,分为六个字段,平均i波段看到0 | $ {^ { prime prime} _ {。}} $ | 58,5σ点源深度为i?。 〜?26。给定第一年科学的保守星系选择标准,深度和出色的图像质量分别导致未加权和加权源数密度分别为24.6和21.8?arcmin?2。我们用该目录定义了宇宙学弱透镜科学的要求,然后着重使用一系列内部空值测试针对点扩展函数(PSF)建模,剪切估计和图像其他方面的问题,对目录中的潜在系统进行了表征处理。我们发现,在此目录下,PSF模型几乎可以满足弱透镜科学的要求,PSF模型分数分数残差约为0.003(要求:0.004),PSF模型形状相关函数ρ1?<?3?×?10?7(要求:4?×?10?7),缩放比例为0 | $ {^ { circ} _ {。}} $ | 5。各种与星系形状相关的零位测试在统计上均与零一致,但星-星系形状相关性揭示了大于1°尺度的累加系统,该系统足够大以至于需要减少宇宙剪切测量。最后,我们讨论了主要的系统学和计划的算法更改,以减少将来的数据缩减。

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