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DETERMINING THE COSMIC DISTANCE SCALE FROM INTERFEROMETRIC MEASUREMENTS OF THE SUNYAEV-ZELDOVICH EFFECT

机译:从SUNYAEV-ZELDOVICH效应的干涉测量法确定宇宙距离标度

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摘要

We determine the distances to 18 galaxy clusters with redshifts ranging from z ~0.14 to 0.78 from a maximum likelihood joint analysis of 30 GHz interferometric Sunyaev-Zeldovich effect (SZE) and X-ray observations. We model the intracluster medium (ICM) using a spherical isothermal β model. We quantify the statistical and systematic uncertainties inherent to these direct distance measurements, and we determine constraints on the Hubble parameter for three different cosmologies. These distances imply a Hubble constant of 60_(-4-18)~(+4+13) km s~(-1) Mpc~(-1) for an Ω_M= 0.3, Ω_Λ= 0.7 cosmology, where the uncertainties correspond to statistical followed by systematic at 68% confidence. With a sample of 18 clusters, systematic uncertainties clearly dominate. The systematics are observationally approachable and will be addressed in the coming years through the current generation of X-ray satellites (Chandra and XMM-Newton) and radio observatories (Owens Valley Radio Observatory, Berkeley-Illinois-Maryland Association, and Very Large Array). Analysis of high-redshift clusters detected in future SZE and X-ray surveys will allow a determination of the geometry of the universe from SZE-determined distances.
机译:我们通过对30 GHz干涉Sunyaev-Zeldovich效应(SZE)和X射线观测的最大似然联合分析,确定到18个具有从z〜0.14到0.78的红移的星系团的距离。我们使用球形等温β模型对集群内介质(ICM)进行建模。我们对这些直接距离测量固有的统计和系统不确定性进行了量化,并确定了三种不同宇宙学对哈勃参数的约束。这些距离意味着对于Ω_M= 0.3,Ω_Λ= 0.7宇宙学,哈勃常数为60 _(-4-18)〜(+ 4 + 13)km s〜(-1)Mpc〜(-1),其中不确定度对应于进行统计分析后,系统置信度为68%。以18个集群为样本,系统的不确定性显然占主导地位。该系统在观察上是可接近的,并将在未来几年中通过当前一代的X射线卫星(钱德拉和XMM-牛顿)和射电天文台(欧文斯谷射电天文台,伯克利-伊利诺伊州-马里兰协会和甚大阵列)加以解决。 。对在未来的SZE和X射线勘测中检测到的高红移星团进行分析,将可以从SZE确定的距离确定宇宙的几何形状。

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