论文标题

当地宇宙中季后星系的大小质量关系

The Size-Mass Relation of Post-Starburst Galaxies in the Local Universe

论文作者

Chen, Xinkai, Lin, Zesen, Kong, Xu, Liang, Zhixiong, Chen, Guangwen, Zhang, Hong-Xin

论文摘要

我们介绍了一项大小的研究 - 当地散发后(PSB)星系的质量关系在$ z \ lyssim0.33 $中从斯隆数字天空调查数据发行8中选择。星系尺寸小于静态星系(QGS)的星系尺寸。在控制红移和恒星质量之后,PSB的尺寸为$ \ sim 13 \%$的平均水平比QGS小,对低$ m _*$结束,尤其是$ 10^{9.5} 〜M _ {\ odot} \ odot} \ limessim m _*} $ sim sim \ osot} $ osot} $ odot} $ odot} $ {10.5} $ {10.5} PSB的平均$ \ sim 19 \%$比QGS小。与宇宙学模拟中可能的PSB进化途径的预测相比,我们建议在短暂的Starburst事件(可能是由主要合并引起的)之后恒星形成的快速淬火应该是我们PSB样品的主导途径。此外,通过与组目录进行交叉匹配,我们确认本地PSB $ M _*\ LISHSIM10^{10} 〜M _ {\ odot} $比更大的pss比较集群。与现场PSB相比,在组中居住的PSB在星系尺寸中略大,并且更类似于磁盘,这在质量上符合与环境驱动的pSBS的快速淬火途径。综上所述,我们的结果支持本地PSB星系的多种进化途径:虽然大量的PSB被认为是在重大合并引起的Starburst,环境诱导的快速淬火后的快速淬火产物,应该在较小的质量PSB的演变中发挥作用,尤其是$ m _**\ MESSIM 10^{10^{10} 〜m _ _} $} $。

We present a study of the size--mass relation for local post-starburst (PSB) galaxies at $z\lesssim0.33$ selected from the Sloan Digital Sky Survey Data Release 8. We find that PSB galaxies with stellar mass ($M_*$) at $10^9~M_{\odot}<M_*<10^{12}~M_{\odot}$ have their galaxy size smaller than or comparable with those of quiescent galaxies (QGs). After controlling redshift and stellar mass, the sizes of PSBs are $\sim 13\%$ smaller on average than those of QGs, such differences become larger and significant towards the low-$M_*$ end, especially at $10^{9.5}~M_{\odot} \lesssim M_*\lesssim 10^{10.5}~M_{\odot}$ where PSBs can be on average $\sim 19\%$ smaller than QGs. In comparison with predictions of possible PSB evolutionary pathways from cosmological simulations, we suggest that a fast quenching of star formation following a short-lived starburst event (might be induced by major merger) should be the dominated pathway of our PSB sample. Furthermore, by cross-matching with group catalogs, we confirm that local PSBs at $M_*\lesssim10^{10}~M_{\odot}$ are more clustered than more massive ones. PSBs resided in groups are found to be slightly larger in galaxy size and more disk-like compared to field PSBs, which is qualitatively consistent with and thus hints the environment-driven fast quenching pathway for group PSBs. Taken together, our results support multiple evolutionary pathways for local PSB galaxies: while massive PSBs are thought of as products of fast quenching following a major merger-induced starburst, environment-induced fast quenching should play a role in the evolution of less massive PSBs, especially at $M_*\lesssim 10^{10}~M_{\odot}$.

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