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Confirmation of the remarkable compactness of massive quiescent galaxies at Z ~ 2.3: Early-type galaxies did not form in a simple monolithic collapse

机译:在Z~2.3确认大质量静止星系的显着紧凑性:早期型星系并未形成简单的整体崩塌

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摘要

Using deep near-infrared spectroscopy, Kriek et al. found that ~45% of massive galaxies at z ~ 2.3 have evolved stellar populations and little or no ongoing star formation. Here we determine the sizes of these quiescent galaxies using deep, high-resolution images obtained with HST/NIC2 and laser guide star (LGS)-assisted Keck/adaptive optics (AO). Considering that their median stellar mass is 1.7 × 1011 M☉, the galaxies are remarkably small, with a median effective radius re = 0.9 kpc. Galaxies of similar mass in the nearby universe have sizes of ≈5 kpc and average stellar densities that are 2 orders of magnitude lower than the z ~ 2.3 galaxies. These results extend earlier work at z ~ 1.5 and confirm previous studies at z > 2 that lacked spectroscopic redshifts and imaging of sufficient resolution to resolve the galaxies. Our findings demonstrate that fully assembled early-type galaxies make up at most ~10% of the population of K-selected quiescent galaxies at z ~ 2.3, effectively ruling out simple monolithic models for their formation. The galaxies must evolve significantly after z ~ 2.3, through dry mergers or other processes, consistent with predictions from hierarchical models.
机译:使用深近红外光谱,Kriek等。发现在z〜2.3时,约45%的大质量星系已演化为恒星,几乎没有恒星形成。在这里,我们使用HST / NIC2和激光导星(LGS)辅助的Keck /自适应光学系统(AO)获得的高分辨率高分辨率图像来确定这些静止星系的大小。考虑到它们的恒星质量中位数为1.7×1011M☉,这些星系非常小,平均有效半径re = 0.9 kpc。在邻近宇宙中质量相似的星系的大小约为≈5 kpc,平均恒星密度比z〜2.3星系低2个数量级。这些结果扩展了z〜1.5的早期工作,并证实了z> 2的以前的研究,这些研究缺乏光谱学的红移和足够的分辨率来分辨星系的成像。我们的发现表明,在z〜2.3时,完全组装的早期类型星系最多占K选择的静态星系总数的〜10%,有效地排除了形成它们的简单整体模型。在z〜2.3之后,星系必须通过干合并或其他过程显着演化,这与层次模型的预测一致。

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