论文标题

Hi-Fil小组中星系的环境处理

Environmental processing of galaxies in HI-rich groups

论文作者

Džudžar, Robert, Kilborn, Virginia, Sweet, Sarah M., Meurer, Gerhardt, Jarrett, T. H., Kleiner, Dane

论文摘要

我们介绍并探索13个HI-rich和晚型主导组的分辨原子氢(HI)含量表示为“合唱团”。我们相对于其祖父母hipass样本的Hi-Mass分数($ f _ {\ textrm {hi}} $)量化了合唱星系的HI内容。我们发现合唱星系的HI质量分数分散在hipass中位数$ -1.4 \leqΔf_ {\ textrm {hi}}} \ textrm {[dex]} \ leq 0.7 $,从hi-excess到hi-excess to hi-excess to hi-Deceficefificefient calaxy encormime。 HI-Excess/HI缺陷星系的含量超过了其相对于髋关节中位数的预期HI内容的2.5倍。我们表明并讨论合唱团中的环境处理是通过潮汐剥离和星系合并发生的。我们的分析表明,潮汐剥离有助于HI的损失,而星系合并有助于增强HI。探索合唱星系的中红外特性,我们发现仅在九个合唱团的星系中发现了可能的环境处理,这表明在HI含量中,环境处理比中红外属性更可感知。此外,我们发现环境处理发生在合唱团组中,无论其全球环境如何,无论它们是孤立的还是靠近较密集的结构,例如宇宙网络丝。我们探讨了合唱团进化的可能场景,考虑到他们的HI内容,速度分散,交叉时间及其全球环境。我们得出的结论是,大多数合唱团群体最有可能的进化是,随着其成员经历多个Hi-Frich的合并,它们将变得更加紧凑。

We present and explore the resolved atomic hydrogen (HI) content of 13 HI-rich and late-type dominated groups denoted `Choirs'. We quantify the HI content of the Choir galaxies with respect to the median of the HI-mass fraction ($f_{\textrm{HI}}$) of their grandparent HIPASS sample. We find that the HI mass fraction of the Choir galaxies is dispersed around the HIPASS median in the range $-1.4 \leq Δf_{\textrm{HI}}\textrm{[dex]}\leq 0.7$, from HI-excess to HI-deficient galaxy regime. The HI-excess/HI-deficient galaxies contain more/less than 2.5 times their expected HI content with respect to the HIPASS median. We show and discuss that the environmental processing in Choirs occurs via tidal stripping and galaxy mergers. Our analysis suggests that tidal stripping contributes to the loss of the HI, while galaxy mergers contribute to the enhancement of the HI. Exploring the mid-infrared properties of Choir galaxies we find possible environmental processing in only nine Choir galaxies, which indicates that environmental processing is more perceptible in the HI content than the mid-infrared properties. Moreover, we find that environmental processing occurs in Choir groups regardless of their global environment, whether they are in isolation or in proximity to the denser structures, such as cosmic web filaments. We explore possible scenarios of the Choirs evolution, taking into account their HI content, velocity dispersion, crossing time and their global environment. We conclude that the most likely evolution for the majority of Choir groups is that they will become more compact as their members undergo multiple HI-rich mergers.

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