论文标题

孤立的低表面亮度星系的静止部分:观察约束

The quiescent fraction of isolated low surface brightness galaxies: Observational constraints

论文作者

Prole, Daniel J., van der Burg, Remco F. J., Hilker, Michael, Spitler, Lee R.

论文摘要

了解低表面亮度星系(LSBG)的形成和演变对于解释其广泛特性至关重要。但是,缺乏距离估计值通常会阻碍对深度光度调查中LSBG的研究。在这项工作中,我们提供了一个新的479个LSBG目录,该目录在超级Suprime-CAM Subaru战略计划(HSC-SSP)的深度光学成像数据中均标识。这些星系遍布各个环境,从田地到组。许多可能是超湿星系(UDGS)。我们看到了有颜色的双峰人群 - Sérsic指数空间的明确证据,并将样本分成红色和蓝色LSBG种群。我们通过将它们与重叠的GAMA光谱调查中的附近光谱星系相关联,来估计215个来源的环境密度。我们发现,蓝色LSBG在统计学上与相对于局部光谱星系的空间随机分配是一致的,这意味着它们主要存在于低密度环境中。但是,红色LSBG人群与局部结构显着相关。我们发现26 +/- 5%的孤立的局部LSBG属于红色种群,我们将其解释为静止。这表明高环境密度在产生静态的LSBG中起主要但不是独特的作用。鉴于LSB星系的大量样本没有预期的距离信息,我们的分析方法可能非常有用。 Vera C. rubin天文台(又称LSST),尤其是与即将进行的综合广泛光谱调查结合使用。

Understanding the formation and evolution of low surface brightness galaxies (LSBGs) is critical for explaining their wide-ranging properties. However, studies of LSBGs in deep photometric surveys are often hindered by a lack of distance estimates. In this work, we present a new catalogue of 479 LSBGs, identified in deep optical imaging data from the Hyper Suprime-Cam Subaru Strategic Program (HSC-SSP). These galaxies are found across a range of environments, from the field to groups. Many are likely to be ultra-diffuse galaxies (UDGs). We see clear evidence for a bimodal population in colour - Sérsic index space, and split our sample into red and blue LSBG populations. We estimate environmental densities for a subsample of 215 sources by statistically associating them with nearby spectroscopic galaxies from the overlapping GAMA spectroscopic survey. We find that the blue LSBGs are statistically consistent with being spatially randomised with respect to local spectroscopic galaxies, implying they exist predominantly in low-density environments. However, the red LSBG population is significantly spatially correlated with local structure. We find that 26+/-5% of isolated, local LSBGs belong to the red population, which we interpret as quiescent. This indicates that high environmental density plays a dominant, but not exclusive, role in producing quiescent LSBGs. Our analysis method may prove to be very useful given the large samples of LSB galaxies without distance information expected from e.g. the Vera C. Rubin observatory (aka LSST), especially in combination with upcoming comprehensive wide field spectroscopic surveys.

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