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首页> 外文期刊>The Astrophysical journal >MEASUREMENT OF COSMIC SHEAR WITH THE SPACE TELESCOPE IMAGING SPECTROGRAPH
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MEASUREMENT OF COSMIC SHEAR WITH THE SPACE TELESCOPE IMAGING SPECTROGRAPH

机译:用太空望远镜成像光谱测量宇宙剪切

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摘要

Weak lensing by large-scale structure allows a direct measure of the dark matter distribution. We have used parallel images taken with the Space Telescope Imaging Spectrograph (STIS) on the Hubble Space Telescope to measure weak lensing, or cosmic shear. We measure the shapes of 26,036 galaxies in 1292 STIS fields and measure the shear variance at a scale of 0.51′. The charge transfer efficiency (CTE) of STIS has degraded over time and introduces a spurious ellipticity into galaxy shapes during the readout process. We correct for this effect as a function of signal-to-noise ratio and CCD position. We further show that the detected cosmic shear signal is nearly constant in time over the approximately 4 yr of observation. We detect cosmic shear at the 5.1 σ level, and our measurement of the shear variance is consistent with theoretical predictions in a ACDM universe. This provides a measure of the normalization of the mass power spectrum σ_8 = (1.02 +- 0.16)(0.3/Ω_m)~(0.46)(0.21/Γ)~(0.18). The 1 σ error includes noise, cosmic variance, systematics, and the redshift uncertainty of the source galaxies. This is consistent with previous cosmic shear measurements, but tends to favor those with a high value of σ_8. It is also consistent with the recent determination of σ_8 from the Wilkinson Microwave Anisotropy Probe (WMAP) experiment.
机译:大型结构的弱透镜可以直接测量暗物质的分布。我们使用在哈勃太空望远镜上使用太空望远镜成像光谱仪(STIS)拍摄的平行图像来测量弱透镜或宇宙剪切力。我们在1292个STIS场中测量了26,036个星系的形状,并以0.51'的比例测量了剪切方差。 STIS的电荷转移效率(CTE)随着时间的推移而降低,并在读出过程中将虚假椭圆率引入星系形状。我们根据信噪比和CCD位置校正此影响。我们进一步表明,在大约4年的观测时间内,检测到的宇宙剪切信号在时间上几乎是恒定的。我们在5.1σ的水平上检测到宇宙剪切,我们对剪切方差的测量与ACDM宇宙中的理论预测一致。这提供了对功率谱σ_8=(1.02 +-0.16)(0.3 /Ω_m)〜(0.46)(0.21 /Γ)〜(0.18)的归一化度量。 1σ误差包括噪声,宇宙方差,系统误差和源星系的红移不确定性。这与以前的宇宙剪切测量结果一致,但倾向于使用σ_8值较高的结果。这也与最近由威尔金森微波各向异性探针(WMAP)实验确定的σ_8一致。

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