论文标题

示例性合并簇:双广播遗物合并星系簇Macs 1752.0+4440和ZWCL 1856.8+6616的弱透镜和X射线分析

Exemplary Merging Clusters: Weak-lensing and X-ray Analysis of the Double Radio Relic Merging Galaxy Clusters MACS 1752.0+4440 and ZWCL 1856.8+6616

论文作者

Finner, Kyle, HyeongHan, Kim, Jee, M. James, Wittman, David, Forman, William R., van Weeren, Reinout J., Golovich, Nathan R., Dawson, William A., Jones, Alexander, de Gasperin, Francesco, Jones, Christine

论文摘要

对展示无线电遗物的合并星系簇进行的调查正在加强我们对星系簇的形成和演变,暗物质的性质,簇内培养基和天体物理颗粒加速度的理解。每个合并群集仅提供群集形成过程的单一视图,并且合并簇的多样性很大。主持双广播文物的集群很少见,非常重要,因为它们允许在合并方案上施加严格的限制。我们提供了MacSJ1752.0+4440($ z $ = 0.365)和ZWCL1856.8+6616($ z $ = 0.304)的MacSJ1752.0+4440($ z $ = 0.365)的弱透镜和X射线分析。我们的弱透明质量估计表明,每个群集都是大约1:1质量比的主要合并。 MACSJ1752.0+4440(ZWCL1856.8+6616)的总质量为$ M_ {200} = 14.7^{+3.8} _ { - 3.3} \ times10^{14} ($ m_ {200} = 2.4^{+0.9} _ { - 0.7} \ times10^{14} \ $ m $ _ \ odot $)。我们发现,这两个集群在弱透镜和气体分布中具有可比性的特征,即使系统的总质量大不相同。从X射线形态的相似性和无线电文物的显着对称性,我们提出,这两个系统都经历了几乎正面的碰撞。但是,来自热气体特征的启示和我们的多波长数据分析表明,ZWCL1856.8+6618的合并阶段可能比MACSJ1752.0+4440以后的合并阶段。我们假设MacSJ1752.0+4440中的SW无线电遗物是粒子重新加速的结果。

The investigation of merging galaxy clusters that exhibit radio relics is strengthening our understanding of the formation and evolution of galaxy clusters, the nature of dark matter, the intracluster medium, and astrophysical particle acceleration. Each merging cluster provides only a single view of the cluster formation process and the variety of merging clusters is vast. Clusters hosting double radio relics are rare and extremely important because they allow tight constraints on the merger scenario. We present a weak-lensing and X-ray analysis of MACSJ1752.0+4440 ($z$=0.365) and ZWCL1856.8+6616 ($z$=0.304), two double radio relic clusters. Our weak-lensing mass estimates show that each cluster is a major merger with approximately 1:1 mass ratio. The total mass of MACSJ1752.0+4440 (ZWCL1856.8+6616) is $M_{200}=14.7^{+3.8}_{-3.3}\times10^{14}\ $M$_\odot$ ($M_{200}=2.4^{+0.9}_{-0.7}\times10^{14}\ $M$_\odot$). We find that these two clusters have comparable features in their weak-lensing and gas distributions, even though the systems have vastly different total masses. From the likeness of the X-ray morphologies and the remarkable symmetry of the radio relics, we propose that both systems underwent nearly head-on collisions. However, revelations from the hot-gas features and our multiwavelength data analysis suggest that ZWCL1856.8+6618 is likely at a later merger phase than MACSJ1752.0+4440. We postulate that the SW radio relic in MACSJ1752.0+4440 is a result of particle re-acceleration.

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