论文标题

使用Galaxy Zoo调查Sloan Digital Sky Stripe 82中的块状星系

Investigating Clumpy Galaxies in the Sloan Digital Sky Survey Stripe 82 using the Galaxy Zoo

论文作者

Mehta, Vihang, Scarlata, Claudia, Fortson, Lucy, Dickinson, Hugh, Adams, Dominic, Chevallard, Jacopo, Charlot, Stéphane, Beck, Melanie, Kruk, Sandor, Simmons, Brooke

论文摘要

巨大的恒星形成团块是高红色恒星形成星系中普遍存在的一个常见特征,并且在塑造其混乱的形态中起着至关重要的作用,但是,它们在星系进化中的性质和作用尚待充分理解。研究团块的大部分努力都集中在高红移上,当地的团块研究经常遭受小样本量的苦难。在这项工作中,我们介绍了本地宇宙中的团块特性的分析,这是第一次使用统计学意义的样本进行。在公民科学驱动的银河动物园:哈勃项目的帮助下,我们在斯隆数字天空调查条纹82个星系中选择了92美元$ z <0.06 $块状星系的样本。在该样品中,我们使用基于对比的图像分析算法识别543个团块,并执行光度法并估算其恒星种群特性。我们的$ z <0.06 $团块样品的总体属性与高红移团体相当。然而,与高红移研究相反,我们没有发现在集团年龄或质量中梯度作为其半乳突距离的效果的证据。我们的结果挑战了本地宇宙的团块演变的内向迁移方案,这可能表明,前坐骨团块和/或较长的团块迁移时间刻度的贡献更大。

Giant, star-forming clumps are a common feature prevalent amongst high-redshift star-forming galaxies and play a critical role in shaping their chaotic morphologies and yet, their nature and role in galaxy evolution remains to be fully understood. A majority of the effort to study clumps has been focused at high redshifts, and local clump studies have often suffered from small sample sizes. In this work, we present an analysis of clump properties in the local universe, and for the first time, performed with a statistically significant sample. With the help of the citizen science-powered Galaxy Zoo: Hubble project, we select a sample of 92 $z<0.06$ clumpy galaxies in Sloan Digital Sky Survey Stripe 82 galaxies. Within this sample, we identify 543 clumps using a contrast-based image analysis algorithm and perform photometry as well as estimate their stellar population properties. The overall properties of our $z<0.06$ clump sample are comparable to the high-redshift clumps. However, contrary to the high-redshift studies, we find no evidence of a gradient in clump ages or masses as a function of their galactocentric distances. Our results challenge the inward migration scenario for clump evolution for the local universe, potentially suggesting a larger contribution of ex-situ clumps and/or longer clump migration timescales.

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