论文标题

用强力镜头和恒星动力学来限制玉米片31中的多尺度黑性分布

Constraining the multi-scale dark-matter distribution in CASSOWARY 31 with strong gravitational lensing and stellar dynamics

论文作者

Wang, H., Cañameras, R., Caminha, G. B., Suyu, S. H., Yıldırım, A., Chirivì, G., Christensen, L., Grillo, C., Schuldt, S.

论文摘要

我们通过采用强镜头和动力学建模来研究组尺度镜头镜头31(CSWA 31)的内部结构。 CSWA 31是一个奇特的镜头系统。最明亮的组星系(BGG)是z = 0.683的超质量椭圆星系,加权平均速度分散$σ= 432 \ pm 31 $ km s $ s $^{ - 1} $。它被小组成员和几个镜头弧围绕,在投影中探测了〜150 kpc。由于新的HST成像和Muse Intemales-Field光谱法,我们的结果大大改善了CSWA 31的先前分析。从对BGG的空间分辨出恒星运动学的五组多个图像的安全识别以及测量,我们使用各种模型方法进行了多尺度质量分布的详细分析,无论是在单个和多个镜头平面场景中。我们的最佳拟合质量模型重现了多个图像的位置,并为Z = 1.4869和Z = 2.763的两个背景星系提供了可靠的重建。在我们的三个参考模型中,BGG和组尺度光环的相对贡献非常一致,这证明了基于图像位置和扩展图像建模的强透镜分析之间的自洽性。我们发现,超质量的BGG在20 kpc以内预测的总质量谱占主导地位,而小组尺度的光环在较大的半径上占主导地位。 $ r_ {eff} $ = 27.2 kpc in $ 1.10 _ { - 0.04}^{+0.02} \ times 10^{13} $ m $ _ \ odot $。我们发现CSWA 31是一个奇特的化石群,强烈地朝中央区域占主导地位,预计的总质量概况类似于较高的质量集群尺度的光环。有效半径内的总质量密度斜率比等温度浅,这与先前对过度密集环境中早期类型星系的分析一致。

We study the inner structure of the group-scale lens CASSOWARY 31 (CSWA 31) by adopting both strong lensing and dynamical modeling. CSWA 31 is a peculiar lens system. The brightest group galaxy (BGG) is an ultra-massive elliptical galaxy at z = 0.683 with a weighted mean velocity dispersion of $σ= 432 \pm 31$ km s$^{-1}$. It is surrounded by group members and several lensed arcs probing up to ~150 kpc in projection. Our results significantly improve previous analyses of CSWA 31 thanks to the new HST imaging and MUSE integral-field spectroscopy. From the secure identification of five sets of multiple images and measurements of the spatially-resolved stellar kinematics of the BGG, we conduct a detailed analysis of the multi-scale mass distribution using various modeling approaches, both in the single and multiple lens-plane scenarios. Our best-fit mass models reproduce the positions of multiple images and provide robust reconstructions for two background galaxies at z = 1.4869 and z = 2.763. The relative contributions from the BGG and group-scale halo are remarkably consistent in our three reference models, demonstrating the self-consistency between strong lensing analyses based on image position and extended image modeling. We find that the ultra-massive BGG dominates the projected total mass profiles within 20 kpc, while the group-scale halo dominates at larger radii. The total projected mass enclosed within $R_{eff}$ = 27.2 kpc is $1.10_{-0.04}^{+0.02} \times 10^{13}$ M$_\odot$. We find that CSWA 31 is a peculiar fossil group, strongly dark-matter dominated towards the central region, and with a projected total mass profile similar to higher-mass cluster-scale halos. The total mass-density slope within the effective radius is shallower than isothermal, consistent with previous analyses of early-type galaxies in overdense environments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源