论文标题

大规模$ z \ sim0.7 $的紧凑结构在squigg $ \ vec {l} $ e样本中

The Compact Structures of Massive $z\sim0.7$ Post-Starburst Galaxies in the SQuIGG$\vec{L}$E Sample

论文作者

Setton, David J., Verrico, Margaret, Bezanson, Rachel, Greene, Jenny E., Suess, Katherine A., Goulding, Andy D., Spilker, Justin S., Kriek, Mariska, Feldmann, Robert, Narayanan, Desika, Hall-Hooper, Khalil, Kado-Fong, Erin

论文摘要

我们介绍了145个光谱镜选择的中间红移(z $ \ sim $ 0.7),大量($ m_ \ star \ sim \ sim \ sim 10^{11} \ m_ \ odot $)从squigg $ \ vec $ \ vec {l} $ e samply samples same same same same same same same semplaxies the-starburst Galaxies使用宽大的超级cam。这种深层成像使我们能够探测这些星系的大小和结构,我们将其与从LEGA-C调查中得出的恒星形成和静态星系的控制样本进行比较。我们发现,恒星后星系系统地躺在$ \ sim0.1 $ dex下方的静态质量大小(半光半径)关系下,散布$ \ sim0.2 $ dex。这一发现得到了非参数措施(例如Gini系数和浓度)的支持,这也揭示了这些星系比在类似质量和红移时具有比静态和星形形成的种群更紧凑的光谱。恒星后星系的大小显示出与淬火以来的时间为负或无关,因此最近淬火星系较大或大小相似。这一经验发现并通过纯粹的恒星形成中心爆发而分布了恒星后星系的形成,该星系同时收缩了银河系并关闭了恒星形成。我们表明,在此时期,恒星后和静态星系的中心密度非常相似,与它们的有效半径相反。 Z $ \ sim $ 0.7的恒星后星系的结构特性与早期宇宙中形成的静态星系的结构特性相匹配,这表明当前时期的快速淬火受到与高红移的类似机制的驱动。

We present structural measurements of 145 spectroscopically selected intermediate-redshift (z$\sim$0.7), massive ($M_\star \sim 10^{11} \ M_\odot$) post-starburst galaxies from the SQuIGG$\vec{L}$E Sample measured using wide-depth Hyper Suprime-Cam i-band imaging. This deep imaging allows us to probe the sizes and structures of these galaxies, which we compare to a control sample of star forming and quiescent galaxies drawn from the LEGA-C Survey. We find that post-starburst galaxies systematically lie $\sim0.1$ dex below the quiescent mass-size (half-light radius) relation, with a scatter of $\sim0.2$ dex. This finding is bolstered by non-parametric measures, such as the Gini coefficient and the concentration, which also reveal these galaxies to have more compact light profiles than both quiescent and star-forming populations at similar mass and redshift. The sizes of post-starburst galaxies show either negative or no correlation with the time since quenching, such that more recently quenched galaxies are larger or similarly sized. This empirical finding disfavors the formation of post-starburst galaxies via a purely central burst of star formation that simultaneously shrinks the galaxy and shuts off star formation. We show that the central densities of post-starburst and quiescent galaxies at this epoch are very similar, in contrast with their effective radii. The structural properties of z$\sim$0.7 post-starburst galaxies match those of quiescent galaxies that formed in the early universe, suggesting that rapid quenching in the present epoch is driven by a similar mechanism to the one at high redshift.

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