论文标题

大爆炸后的15亿年

A Cold, Massive, Rotating Disk Galaxy 1.5 Billion Years after the Big Bang

论文作者

Neeleman, Marcel, Prochaska, J. Xavier, Kanekar, Nissim, Rafelski, Marc

论文摘要

在传统的银河形成模型中,预计像银河系这样的大型磁盘星系将在后期形成,但是最近的数值模拟表明,这种星系可能在大爆炸后通过冷材料和合并的积聚在大爆炸后的十亿年就会形成。从观察上讲,很难在高红移处识别出发射中的磁盘星系,以辨别出星系形成的竞争模型。在这里,我们报告了成像,分辨率约为1.3千摩尔2.158微米的排放线,从单电离碳,远红外的粉尘连续体和近粉状粉状的连续排放中的近粉状粉尘连续排放,该银河系是4.2603的4.2603,通过检测Quasar Light的吸收来鉴定的。这些观察结果表明,发射是由寒冷,尘土飞扬的旋转磁盘内的气体引起的,旋转速度为每秒272公里。银河系中一氧化碳的发射检测产生的分子质量与大约720亿太阳能的电离碳发射的估计值一致。当宇宙只有15亿年历史时,通过冷模式积聚或合并,存在如此巨大的旋转支持,冷盘星系,尽管其较大的旋转速度和较大的冷气含量仍然具有挑战性,但可以通过大多数数值模拟来复制。

Massive disk galaxies like the Milky Way are expected to form at late times in traditional models of galaxy formation, but recent numerical simulations suggest that such galaxies could form as early as a billion years after the Big Bang through the accretion of cold material and mergers. Observationally, it has been difficult to identify disk galaxies in emission at high redshift, in order to discern between competing models of galaxy formation. Here we report imaging, with a resolution of about 1.3 kiloparsecs, of the 158-micrometre emission line from singly ionized carbon, the far-infrared dust continuum and the near-ultraviolet continuum emission from a galaxy at a redshift of 4.2603, identified by detecting its absorption of quasar light. These observations show that the emission arises from gas inside a cold, dusty, rotating disk with a rotational velocity of 272 kilometres per second. The detection of emission from carbon monoxide in the galaxy yields a molecular mass that is consistent with the estimate from the ionized carbon emission of about 72 billion solar masses. The existence of such a massive, rotationally supported, cold disk galaxy when the Universe was only 1.5 billion years old favours formation through either cold-mode accretion or mergers, although its large rotational velocity and large content of cold gas remain challenging to reproduce with most numerical simulations.

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