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Infrared observations of gravitational lensing in Abell 2219 with CIRSI

机译:利用CIRSI对Abell 2219中的引力透镜进行红外观察

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摘要

We present the first detection of a gravitational depletion signal at near-infrared wavelengths, based on deep panoramic images of the cluster Abell 2219 (z=0.22) taken with the Cambridge Infrared Survey Instrument (CIRSI) at the prime focus of the 4.2m William Herschel Telescope. Infrared studies of gravitational depletion offer a number of advantages over similar techniques applied at optical wavelengths, and can provide reliable total masses for intermediate redshift clusters. Using the maximum likelihood technique developed by Schneider, King & Erben (1999), we detect the gravitational depletion at the 3 sigma confidence level. By modeling the mass distribution as a singular isothermal sphere and ignoring uncertainty in the unlensed number counts, we find an Einstein radius of 13.7 +3.9/-4.2 arcsec (66% confidence limit). This corresponds to a projected velocity dispersion of approximately 800 km/s, in agreement with constraints from strongly-lensed features. For a Navarro, Frenk and White mass model, the radial dependence observed indicates a best-fitting halo scale length of 125/h kpc}. We investigate the uncertainties arising from the observed fluctuations in the unlensed number counts, and show that clustering is the dominant source of error. We extend the maximum likelihood method to include the effect of incompleteness, and discuss the prospects of further systematic studies of lensing in the near-infrared band.
机译:我们基于在4.2m威廉的主要焦点上用剑桥红外测量仪器(CIRSI)拍摄的Abell 2219星团(z = 0.22)的深层全景图像,提出了近红外波长下的重力耗尽信号的首次检测。赫歇尔望远镜。相对于光波长应用的类似技术,重力耗尽的红外研究提供了许多优势,并且可以为中间的红移簇提供可靠的总质量。使用Schneider,King和Erben(1999)开发的最大似然技术,我们可以检测到3σ置信水平下的重力耗竭。通过将质量分布建模为奇异的等温球体,并忽略无透镜数计数中的不确定性,我们发现爱因斯坦半径为13.7 + 3.9 / -4.2 arcsec(66%置信限)。与强透镜特征的约束一致,这对应于约800 km / s的预计速度色散。对于Navarro,Frenk和White质量模型,观察到的径向依存关系表明最佳拟合的光晕刻度长度为125 / h kpc}。我们调查了非透镜数计数中观察到的波动所产生的不确定性,并表明聚类是误差的主要来源。我们将最大似然法扩展到包括不完整的影响,并讨论了进一步系统研究近红外波段透镜的前景。

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