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首页> 外文期刊>The Astrophysical journal >REDSHIFT DEPENDENCE OF THE COSMIC MICROWAVE BACKGROUND TEMPERATURE FROM SUNYAEV-ZELDOVICH MEASUREMENTS
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REDSHIFT DEPENDENCE OF THE COSMIC MICROWAVE BACKGROUND TEMPERATURE FROM SUNYAEV-ZELDOVICH MEASUREMENTS

机译:SUNYAEV-ZELDOVICH测量结果对宇宙微波背景温度的降低依赖性

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摘要

We have determined the cosmic microwave background temperature, T(z), at redshifts in the range 0.023-0.546, from multi-frequency measurements of the Sunyaev-Zeldovich (S-Z) effect toward 13 clusters. We extract the parameter α in the redshift scaling T(z) = T 0(1 + z)1–α, which contrasts the prediction of the standard model (α = 0) with that in non-adiabatic evolution conjectured in some alternative cosmological models. The statistical analysis is based on two main approaches: using ratios of the S-Z intensity change, ΔI, thus taking advantage of the weak dependence of the ratios on intracluster gas properties, and using directly the ΔI measurements. In the former method, dependence on the Thomson optical depth and gas temperature is only second order in these quantities. In the second method, we marginalize over these quantities which appear to first order in the intensity change. The marginalization itself is done in two ways—by direct integrations and by a Monte Carlo Markov chain approach. Employing these different methods we obtain two sets of results that are consistent with α = 0, in agreement with the prediction of the standard model.
机译:我们已经确定了宇宙微波背景温度T(z)在0.023-0.546范围内的红移范围内,这是从对Sunyaev-Zeldovich(S-Z)效应的多频测量向13个星团进行的。我们在红移定标T(z)= T 0(1 + z)1-α中提取参数α,这与标准模型(α= 0)的预测与某些替代宇宙学中非绝热演化的预测形成对比楷模。统计分析基于两种主要方法:使用S-Z强度变化的比率ΔI,从而利用比率对簇内气体属性的弱依赖性,以及直接使用ΔI测量。在前一种方法中,对Thomson光学深度和气体温度的依赖仅是这些数量的二阶。在第二种方法中,我们对强度变化中显示为一阶的这些量进行边缘化处理。边缘化本身可以通过两种方式完成:直接整合和蒙特卡洛马尔可夫链方法。使用这些不同的方法,我们获得了与α= 0一致的两组结果,与标准模型的预测相符。

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