论文标题
环境群集效应和星系进化:Abell簇A85/A496/A2670的HI特性
Environmental cluster effects and galaxy evolution: The HI properties of the Abell clusters A85/A496/A2670
论文作者
论文摘要
我们研究了当地环境对附近三个($ z <0.08 $)的螺旋星系转变的影响Abell簇:A85/A496/A2670。在HI中观察到这些系统的阵列非常大,涵盖了超出病毒半径的体积,并分别检测到10、58、38个星系。明亮螺旋的高分子(0.40--0.86)[log $(m _ {*}/m _ {\ odot})= 9-10 $]在HI中未检测到。我们提供了进一步的证据表明,环境效应由异常物体和许多红色(被动)螺旋形成的重要分数(0.10--0.33)组成,这表明持续的淬火过程。 RAM压力曲线以及用作环境效应的测试颗粒的最亮螺旋的样品表明,RAM压力在剥离和转化晚期型中起重要作用。相空间图和我们对子结构的搜索有助于追踪三个系统的动态阶段。这用于比较全球群集效应$ vs. $预处理,发现前者是研究簇中的主导机构。通过将HI正常$ vs. $ HI的全球分布形成鲜明对比,在三个群集中,我们平均在较短的投影半径上确认了扰乱的对象的预期相关性。但是,单个集群不一定遵循这一趋势,我们表明A496和A2670呈现出非典型行为。通常,我们提供了关于螺旋螺旋的转化在群集特性集合等质量,ICM密度,动力学阶段和周围大规模结构等集群特性集合中的依赖性的确定证据。
We study the impact of local environment on the transformation of spiral galaxies in three nearby ($z < 0.08$) Abell clusters: A85/A496/A2670. These systems were observed in HI with the Very Large Array, covering a volume extending beyond the virial radius and detecting 10, 58, 38 galaxies, respectively. High fractions (0.40--0.86) of bright spirals [log$(M_{*}/M_{\odot})=9-10$] are not detected in HI. We provide further evidence of environmental effects consisting in significant fractions (0.10--0.33) of abnormal objects and a number of red (passive) spirals, suggesting an ongoing process of quenching. Ram-pressure profiles, and the sample of the brightest spirals used as test particles for environmental effects, indicate that ram-pressure plays an important role in stripping and transforming late-types. Phase-space diagrams and our search for substructures helped to trace the dynamical stage of the three systems. This was used to compare the global cluster effects $vs.$ pre-processing, finding that the former is the dominating mechanism in the studied clusters. By contrasting the global distribution of HI normal $vs.$ HI disturbed spirals in the combined three clusters, we confirm the expected correlation of disturbed objects located, on average, at shorter projected radii. However, individual clusters do not necessarily follow this trend and we show that A496 and A2670 present an atypical behavior. In general we provide conclusive evidence about the dependence of the transformation of infalling spirals on the ensemble of cluster properties like mass, ICM density, dynamical stage and surrounding large-scale structure.