We present a weak-lensing analysis of the z=1.4 galaxy cluster XMMU J2235.3-2557, based on deep Advanced Camera for Surveys images. Despite the observational challenge set by the high redshift of the lens, we detect a substantial lensing signal at the >~ 8 sigma level. This clear detection is enabled in part by the high mass of the cluster, which is verified by our both parametric and non-parametric estimation of the cluster mass. Assuming that the cluster follows a Navarro-Frenk-White mass profile, we estimate that the projected mass of the cluster within r=1 Mpc is (8.5+-1.7) x 10^14 solar mass, where the error bar includes the statistical uncertainty of the shear profile, the effect of possible interloping background structures, the scatter in concentration parameter, and the error in our estimation of the mean redshift of the background galaxies. The high X-ray temperature 8.6_{-1.2}^{+1.3} keV of the cluster recently measured with Chandra is consistent with this high lensing mass. When we adopt the 1-sigma lower limit as a mass threshold and use the cosmological parameters favored by the Wilkinson Microwave Anisotropy Probe 5-year (WMAP5) result, the expected number of similarly massive clusters at z >~ 1.4 in the 11 square degree survey is N ~ 0.005. Therefore, the discovery of the cluster within the survey volume is a rare event with a probability < 1%, and may open new scenarios in our current understanding of cluster formation within the standard cosmological model.
翻译:我们根据深高级勘测相机图像,对z=1.4星系群集XMMMU J2235.3-2557进行了微缩分析。尽管镜头高红档设定了观测挑战,但我们在 & 8 sigma 水平上检测到一个巨大的透镜信号。这种清晰的探测部分是由于聚集的高度质量,由我们对群集质量的参数和非参数估计加以核实。假设聚集遵循的是Navarro-Frenk-White质量剖面图,我们估计R=1 mpc内集群的预测质量为(8.5+-1.7) x 10 14太阳质量,其中错误栏包括剪透图的统计不确定性、可能的间隔背景结构的效应,以及我们估计背景星系平均变异的错误。最近与Chandra测量的聚集的高X射线温度 8.6 ⁇ -1.2 ⁇ 1.3} KeV与这一高透视质量一致。当我们将1- sigmamile 模型下值 <-1--1-l-l-l-Ic) 的假设度假设值为1 massal-cloal missal 时间 事件量值时,在1 missal-maxyal ASyal studal 5 的模型中,在1 missional 的模型的模型的模型的预估测标数中将使用1 musal-maxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx。