Komatsu E, Kitayama T
Astrophys J. 1999 Nov 20;526(1):L1-L4. doi: 10.1086/312364.
We present angular power spectra of the cosmic microwave background radiation anisotropy due to fluctuations of the Sunyaev-Zeldovich (SZ) effect through clusters of galaxies. A contribution from the correlation among clusters, which has been neglected in previous analyses, is especially focused on. Employing the evolving linear bias factor based on the Press-Schechter formalism, we find that the clustering contribution amounts to 20%-30% of the Poissonian contribution at degree angular scales. If we exclude clusters in the local universe, it even exceeds the Poissonian noise and makes the dominant contribution to the angular power spectrum. As a concrete example, we demonstrate the subtraction of the ROSAT X-ray and Planck SZ flux-limited cluster samples. It indicates that we should include the clustering effect in the analysis of the SZ fluctuations. We further find that the degree scale spectra essentially depend upon the normalization of the density fluctuations, i.e., sigma8, and the gas mass fraction of the cluster, rather than the density parameter of the universe and details of cluster evolution models. Our results show that the SZ fluctuations at the degree scale will provide a possible measure of sigma8, while the arcminute spectra will provide a probe of the cluster evolution. In addition, the clustering spectrum will give us valuable information on the bias at high redshift, if we can detect it by removing X-ray or SZ luminous clusters.
我们展示了由于星系团的苏尼亚耶夫-泽尔多维奇(SZ)效应波动导致的宇宙微波背景辐射各向异性的角功率谱。特别关注了在先前分析中被忽略的星系团间相关性的贡献。利用基于普雷斯-谢赫特形式主义的演化线性偏差因子,我们发现在度角尺度上,聚类贡献占泊松贡献的20%-30%。如果排除本地宇宙中的星系团,它甚至会超过泊松噪声,并对角功率谱做出主要贡献。作为一个具体例子,我们展示了对ROSAT X射线和普朗克SZ流量限制星系团样本的减除。这表明在SZ波动分析中我们应该考虑聚类效应。我们进一步发现度尺度谱本质上取决于密度涨落的归一化,即sigma8,以及星系团的气体质量分数,而不是宇宙的密度参数和星系团演化模型的细节。我们的结果表明,度尺度上的SZ波动将提供一种测量sigma8的可能方法,而角分尺度谱将提供对星系团演化的一种探测。此外,如果我们能够通过去除X射线或SZ亮星系团来检测到它,聚类谱将为高红移处的偏差提供有价值的信息。