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首页> 外文期刊>The Astrophysical journal >THE ATACAMA COSMOLOGY TELESCOPE: COSMOLOGY FROM GALAXY CLUSTERS DETECTED VIA THE SUNYAEV-ZEL'DOVICH EFFECT
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THE ATACAMA COSMOLOGY TELESCOPE: COSMOLOGY FROM GALAXY CLUSTERS DETECTED VIA THE SUNYAEV-ZEL'DOVICH EFFECT

机译:阿塔卡马太空望远镜电视:通过SUNYAEV-ZEL'DOVICH效应从银河团的宇宙望远镜检测

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摘要

We present constraints on cosmological parameters based on a sample of Sunyaev-Zel'dovich-selected (SZ-selected) galaxy clusters detected in a millimeter-wave survey by the Atacama Cosmology Telescope. The cluster sample used in this analysis consists of nine optically confirmed high-mass clusters comprising the high-significance end of the total cluster sample identified in 455 deg2 of sky surveyed during 2008 at 148 GHz. We focus on the most massive systems to reduce the degeneracy between unknown cluster astrophysics and cosmology derived from SZ surveys. We describe the scaling relation between cluster mass and SZ signal with a four-parameter fit. Marginalizing over the values of the parameters in this fit with conservative priors gives σ8 = 0.851 ± 0.115 and w = –1.14 ± 0.35 for a spatially flat wCDM cosmological model with Wilkinson Microwave Anisotropy Probe (WMAP) seven-year priors on cosmological parameters. This gives a modest improvement in statistical uncertainty over WMAP seven-year constraints alone. Fixing the scaling relation between the cluster mass and SZ signal to a fiducial relation obtained from numerical simulations and calibrated by X-ray observations, we find σ8 = 0.821 ± 0.044 and w = –1.05 ± 0.20. These results are consistent with constraints from WMAP7 plus baryon acoustic oscillations plus Type Ia supernova which give σ8 = 0.802 ± 0.038 and w = –0.98 ± 0.053. A stacking analysis of the clusters in this sample compared to clusters simulated assuming the fiducial model also shows good agreement. These results suggest that, given the sample of clusters used here, both the astrophysics of massive clusters and the cosmological parameters derived from them are broadly consistent with current models.
机译:我们基于由阿塔卡马宇宙望远镜在毫米波勘测中检测到的经Sunyaev-Zel'dovich选择(SZ选择)的星系团样本,提出了对宇宙学参数的约束。此分析中使用的星团样本由九个光学确认的高质量星团组成,包括在2008年在148 GHz上测量的455 deg2的天空中识别出的总星团样本的高重要性端。我们将重点放在最庞大的系统上,以减少未知星团天体物理学与SZ调查得出的宇宙学之间的退化。我们用四参数拟合描述簇质量和SZ信号之间的比例关系。使用保守的先验对参数值进行边际化可以得到σ8= 0.851±0.115和w = –1.14±0.35,对于空间平的wCDM宇宙学模型,该模型具有7年先验的Wilkinson微波各向异性探测器(WMAP)的宇宙学参数。仅在WMAP的7年限制条件下,统计不确定性得到了适度的改善。将簇质量和SZ信号之间的比例关系固定为通过数值模拟获得并通过X射线观测进行校准的基准关系,我们发现σ8= 0.821±0.044和w = –1.05±0.20。这些结果与WMAP7加上重子声波振荡和Ia型超新星产生的约束一致,σ8= 0.802±0.038,w = –0.98±0.053。与假定基准模型的模拟聚类相比,此样本中聚类的堆叠分析也显示出良好的一致性。这些结果表明,给定此处使用的星团样本,大星团的天体物理学和从它们中得出的宇宙学参数都与当前模型大致一致。
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