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首页> 外文期刊>The Astrophysical journal >THE MASS-RICHNESS RELATION OF MaxBCG CLUSTERS FROM QUASAR LENSING MAGNIFICATION USING VARIABILITY
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THE MASS-RICHNESS RELATION OF MaxBCG CLUSTERS FROM QUASAR LENSING MAGNIFICATION USING VARIABILITY

机译:使用变异性的拟象限放大倍数对MaxBCG团的质量富关系

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Accurate measurement of galaxy cluster masses is an essential component not only in studies of cluster physics but also for probes of cosmology. However, different mass measurement techniques frequently yield discrepant results. The Sloan Digital Sky Survey MaxBCG catalog's mass-richness relation has previously been constrained using weak lensing shear, Sunyaev-Zeldovich (SZ), and X-ray measurements. The mass normalization of the clusters as measured by weak lensing shear is 25% higher than that measured using SZ and X-ray methods, a difference much larger than the stated measurement errors in the analyses. We constrain the mass-richness relation of the MaxBCG galaxy cluster catalog by measuring the gravitational lensing magnification of type I quasars in the background of the clusters. The magnification is determined using the quasars' variability and the correlation between quasars' variability amplitude and intrinsic luminosity. The mass-richness relation determined through magnification is in agreement with that measured using shear, confirming that the lensing strength of the clusters implies a high mass normalization and that the discrepancy with other methods is not due to a shear-related systematic measurement error. We study the dependence of the measured mass normalization on the cluster halo orientation. As expected, line-of-sight clusters yield a higher normalization; however, this minority of haloes does not significantly bias the average mass-richness relation of the catalog.
机译:准确测量星系团质量不仅是研究团簇物理学的重要组成部分,而且对于宇宙学探测也是必不可少的。但是,不同的质量测量技术经常会产生不同的结果。 Sloan Digital Sky Survey MaxBCG目录的质量-质量关系以前曾使用弱透镜剪切,Sunyaev-Zeldovich(SZ)和X射线测量来约束。用微弱的透镜剪切力测量的团簇的质量归一化比使用SZ和X射线方法测量的团聚的质量归一化高25%,差异远大于分析中所述的测量误差。我们通过测量星团背景中I型类星体的引力透镜放大倍数,来限制MaxBCG星系星团目录的质量-丰富度关系。使用类星体的变异性以及类星体的变异性幅度和固有光度之间的相关性来确定放大倍数。通过放大倍数确定的质量-富集关系与使用剪切测量的质量富集关系一致,这证实了簇的透镜强度暗示着高质量的归一化,并且与其他方法的差异并非由于剪切相关的系统测量误差所致。我们研究了测得的质量归一化对簇晕方向的依赖性。正如预期的那样,视线群集的归一化程度更高。但是,这种少数的光环并没有显着地偏向目录的平均质量-丰富度关系。

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