论文标题
在星系群PLCK G165.7+67.0领域中发现的可能正在进行的合并。
Possible Ongoing Merger Discovered by Photometry and Spectroscopy in the Field of the Galaxy Cluster PLCK G165.7+67.0
论文作者
论文摘要
我们介绍了Planck选择的二进制星系集群PLCK G165.7+67.0(G165; $ Z $ = 0.348)的详细研究。生成了多播光目录,该目录结合了大型双眼望远镜/大型双筒望远镜和Spitzer/IRAC到现有成像的新成像。为了应对不同的图像特性,在提取匹配的孔径光度法的提取中应用了鲁棒方法。在4个Arcmin $^{2} $中,所有这些数据涵盖的重叠的字段估计了143个星系的光度红移。我们确认,强烈的镜头效应产生了11个背景星系的30张图像,其中我们为三个图像多重性提供了光度光度估计。这些约束可以构建确认双峰结构的修订镜头模型,从中我们测量M $ _ {600 kpc} $ =(2.36 $ \ pm $ 0.23)$ \ times $ 10 $^{14} $^{14} $ M $ _ {\ odot} $。同时,使用MMT/BINOSPEC和档案数据的新光谱法贡献了13个星系,这些星系符合我们的速度和横向半径标准,用于集群成员。两个群集组件的配对速度为$ \ Lessapprox $ 100 kms $^{ - 1} $,有利于在天空平面上的方向,横向速度为100-1700 kmms $^{ - 1} $。同时,最明亮的集群星系的速度偏离了系统的平均值。新的Lofar和VLA无线电地图揭示了BCG和东北侧的一个大红色银河系,成为头尾星系,这表明该组件已经横穿了西南侧,现在将群集退出东北。
We present a detailed study of the Planck-selected binary galaxy cluster PLCK G165.7+67.0 (G165; $z$=0.348). A multiband photometric catalog is generated that incorporates new imaging from the Large Binocular Telescope/Large Binocular Camera and Spitzer/IRAC to existing imaging. To cope with the different image characteristics, robust methods are applied in the extraction of the matched-aperture photometry. Photometric redshifts are estimated for 143 galaxies in the 4 arcmin$^{2}$ field of overlap covered by all these data. We confirm that strong lensing effects yield 30 images of 11 background galaxies, of which we contribute photometric redshift estimates for three image multiplicities. These constraints enable the construction of a revised lens model that confirms the bimodal structure, and from which we measure a mass of M$_{600 kpc}$=(2.36$\pm$0.23)$\times$10$^{14}$M$_{\odot}$. In parallel, new spectroscopy using MMT/Binospec and archival data contributes thirteen galaxies which meet our velocity and transverse radius criteria for cluster membership. The two cluster components have a pair-wise velocity of $\lessapprox$100 kms$^{-1}$, favoring an orientation in the plane of the sky with a transverse velocity of 100-1700 kms$^{-1}$. At the same time, the brightest cluster galaxy is offset in velocity from the systemic mean value. New LOFAR and VLA radio maps uncover the BCG and a large red galaxy in the northeastern side to be head-tail galaxies, suggesting that this component has already traversed southwestern side and is now exiting the cluster to the northeast.