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The Subaru FMOS galaxy redshift survey (FastSound). V. Intrinsic alignments of emission-line galaxies at z similar to 1.4

机译:Subaru FMOS Galaxy Redshift调查(FastSound)。 V. Z处于类似于1.4的Z发射线星系的固有对齐

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摘要

Intrinsic alignments (IA), the coherent alignment of intrinsic galaxy orientations, can be a source of a systematic error of weak lensing surveys. The redshift evolution of IA also contains information about the physics of galaxy formation and evolution. This paper presents the first measurement of IA at high redshift, z similar to 1.4, using the spectroscopic catalog of blue star-forming galaxies of the FastSound redshift survey, with the galaxy shape information from the Canada-Hawaii-France telescope lensing survey. The IA signal is consistent with zero with power-law amplitudes fitted to the projected correlation functions for density-shape and shape-shape correlation components, A(delta+) = -0.0071 +/- 0.1340 and A(++) = -0.0505 +/- 0.0848, respectively. These results are consistent with those obtained from blue galaxies at lower redshifts (e.g., A(delta+) = 0.0035(-0.0389)(+0.0387) and A(++) = 0.0045(-0.0168)(+0.0166) at z = 0.51 from the WiggleZ survey). The upper limit of the constrained IA amplitude corresponds to a few percent contamination to the weak-lensing shear power spectrum, resulting in systematic uncertainties on the cosmological parameter estimations by -0.052 Delta sigma(8) 0.039 and -0.039 Delta Omega(m) 0.030.
机译:本征对准(IA),内在星系取向的相干对准,可以是弱镜头调查的系统误差的源。 IA的红移演化还包含有关银河形成和演化的物理学的信息。本文介绍了高红移,Z类似于1.4的IA的第一次测量,使用了FastSound Redshift调查的蓝星形成星系的光谱目录,从加拿大 - 夏威夷 - 法国望远镜镜头调查中的银河形状信息。 IA信号与零的功率律振幅一致,其拟合到密度形状和形状相关分量的投影相关函数,a(delta +)= -0.0071 +/- 0.1340和a(++)= -0.0505 + / - 0.0848分别。这些结果与从较低射频的蓝色星系中获得的结果一致(例如,(Δ+)= 0.0035(-0.0389)(+ 0.0387)和(++)= 0.0045(-0.0168)(+ 0.0166),在Z = 0.51来自Wigglez调查)。约束的IA幅度的上限对应于对弱透镜剪切功率谱的几个百分比污染,导致宇宙学参数估计的系统不确定性-0.052& Delta Sigma(8)& 0.039和-0.039& Delta Omega(m)& 0.030。

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