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在大爆炸后不到10亿年的类星体宿主中出现的千秒差距尺度的超星暴。

A kiloparsec-scale hyper-starburst in a quasar host less than 1 gigayear after the Big Bang.

作者信息

Walter Fabian, Riechers Dominik, Cox Pierre, Neri Roberto, Carilli Chris, Bertoldi Frank, Weiss Axel, Maiolino Roberto

机构信息

Max-Planck-Institut für Astronomie, Königstuhl 17, D-69117 Heidelberg, Germany.

出版信息

Nature. 2009 Feb 5;457(7230):699-701. doi: 10.1038/nature07681.

Abstract

The host galaxy of the quasar SDSS J114816.64+525150.3 (at redshift z = 6.42, when the Universe was less than a billion years old) has an infrared luminosity of 2.2 x 10(13) times that of the Sun, presumably significantly powered by a massive burst of star formation. In local examples of extremely luminous galaxies, such as Arp 220, the burst of star formation is concentrated in a relatively small central region of <100 pc radius. It is not known on which scales stars are forming in active galaxies in the early Universe, at a time when they are probably undergoing their initial burst of star formation. We do know that at some early time, structures comparable to the spheroidal bulge of the Milky Way must have formed. Here we report a spatially resolved image of [C ii] emission of the host galaxy of J114816.64+525150.3 that demonstrates that its star-forming gas is distributed over a radius of about 750 pc around the centre. The surface density of the star formation rate averaged over this region is approximately 1,000 year(-1) kpc(-2). This surface density is comparable to the peak in Arp 220, although about two orders of magnitude larger in area. This vigorous star-forming event is likely to give rise to a massive spheroidal component in this system.

摘要

类星体SDSS J114816.64+525150.3(红移z = 6.42,当时宇宙年龄不到10亿年)的宿主星系的红外光度是太阳的2.2×10¹³倍,推测主要由一次大规模的恒星形成爆发提供能量。在诸如阿普220这样的高光度星系的本地例子中,恒星形成爆发集中在半径小于100秒差距的相对较小的中心区域。在早期宇宙中,当活跃星系可能正在经历其最初的恒星形成爆发时,尚不清楚恒星是在哪些尺度上形成的。我们确实知道,在某个早期阶段,类似于银河系球状凸起的结构肯定已经形成。在此,我们报告了J114816.64+525150.3宿主星系的[C ii]发射的空间分辨图像,该图像表明其恒星形成气体分布在中心周围半径约75秒差距的范围内。在该区域平均的恒星形成率表面密度约为1000年⁻¹千秒差距⁻²。这个表面密度与阿普220中的峰值相当,尽管面积大约大两个数量级。这次剧烈的恒星形成事件很可能在这个系统中产生一个大质量的球状成分。

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