论文标题

早期宇宙中动态的冷盘星系

A dynamically cold disk galaxy in the early Universe

论文作者

Rizzo, F., Vegetti, S., Powell, D., Fraternali, F., McKean, J. P., Stacey, H. R., White, S. D. M.

论文摘要

预计早期宇宙表征的极端天体物理过程和条件将导致年轻的星系与当今观察到的星系动态不同。这是因为与星系合并和超新星爆炸相关的强大影响将导致大多数年轻的星形星系动态热,混乱且非常不稳定。在这里,我们报告了在Redshift($ Z $)4.2的银河系中有动态寒冷但高度恒星的旋转磁盘的存在,当时宇宙只有14亿年的历史。 Galaxy SPT-S J041839-4751.9在$ z = 0.263 $的前景星系上强烈重力镜头,它是典型的尘土飞扬的星爆,具有全球恒星形成和灰尘特性,具有与当前的数值模拟和其银河系人群的数值模拟相吻合。在大约60 pc的空间分辨率下进行干涉成像显示旋转与随机运动的比例为$ v/σ= 9.7 \ pm 0.4 $,至少四倍,比该时代的任何星系演化模型的预期大四倍,但与当地宇宙中螺旋星系的比率相似。我们在附近的巨大螺旋星系的典型形状中得出了旋转曲线,该曲线表明至少某些年轻星系与在当地宇宙中观察到的星系动态类似,并且仅受到极端物理过程的影响。

The extreme astrophysical processes and conditions that characterize the early Universe are expected to result in young galaxies that are dynamically different from those observed today. This is because the strong effects associated with galaxy mergers and supernova explosions would lead to most young star-forming galaxies being dynamically hot, chaotic and strongly unstable. Here we report the presence of a dynamically cold, but highly star-forming, rotating disk in a galaxy at redshift ($z$) 4.2, when the Universe was just 1.4 billion years old. Galaxy SPT-S J041839-4751.9 is strongly gravitationally lensed by a foreground galaxy at $z = 0.263$, and it is a typical dusty starburst, with global star-forming and dust properties that are in agreement with current numerical simulations and observations of its galaxy population. Interferometric imaging at a spatial resolution of about 60 pc reveals a ratio of rotational-to-random motions of $V/σ= 9.7\pm 0.4$, which is at least four times larger than expected from any galaxy evolution model at this epoch, but similar to the ratios of spiral galaxies in the local Universe. We derive a rotation curve with the typical shape of nearby massive spiral galaxies, which demonstrates that at least some young galaxies are dynamically akin to those observed in the local Universe, and only weakly affected by extreme physical processes.

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