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Cosmological constraints from cosmic shear two-point correlation functions with HSC survey first-year data

机译:来自HSC调查第一年数据的宇宙剪切两点相关函数的宇宙学约束

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We present measurements of cosmic shear two-point correlation functions (TPCFs) from Hyper Suprime-Cam Subaru Strategic Program (HSC) first-year data, and derive cosmological constraints based on a blind analysis. The HSC first-year shape catalog is divided into four tomographic redshift bins ranging from z= 0.3 to 1.5 with equal widths of Delta z= 0.3. The unweighted galaxy number densities in each tomographic bin are 5.9, 5.9, 4.3, and 2.4 arcmin(-2) from the lowestto highest redshifts, respectively. We adopt the standard TPCF estimators, xi(+/-) for our cosmological analysis, given that we find no evidence of significant B-mode shear. The TPCFs are detected at high significance for all 10 combinations of auto- and cross-tomographic bins over a wide angular range, yielding a total signal-tonoise ratio of 19 in the angular ranges adopted in the cosmological analysis, 7' < theta < 56' for xi(+) and 28' < theta < 178' for xi(-). We perform the standard Bayesian likelihood analysis for cosmological inference from the measured cosmic shear TPCFs, including contributions from intrinsic alignment of galaxies as well as systematic effects from PSF model errors, shear calibration uncertainty, and source redshift distribution errors. We adopt a covariance matrix derived from realistic mock catalogs constructed from full-sky gravitational lensing simulations that fully account for survey geometry and measurement noise. For a flat Lambda cold dark matter model, we find S-8 (math) sigma(8)root Omega(m)/0.3 = 0.8041(-0.029)(+0.032) and Omega(m) = 0.346(-0.100)(+0.052). We carefully check the robustness of the cosmological results against astrophysical modeling uncertainties and systematic uncertainties in measurements, and find that none of them has a significant impact on the cosmological constraints.
机译:我们从Hyper Suprime-Cam Subaru战略计划(HSC)的第一年数据中介绍了宇宙剪切两点相关函数(TPCF)的测量,并基于盲分析得出了宇宙学约束。 HSC一年级形状目录分为四个断层摄影红移箱,范围从z = 0.3到1.5,且等宽的Delta z = 0.3。从最小红移到最大红移,每个断层摄影箱中的未加权星系数密度分别为5.9、5.9、4.3和2.4 arcmin(-2)。鉴于我们没有发现显着的B模切变的证据,我们采用标准的TPCF估计值xi(+/-)进行宇宙分析。 TPCF在很宽的角度范围内对所有10种自动和断层扫描箱组合的检测具有很高的意义,在宇宙学分析采用的角度范围内,总信噪比为19,7'

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