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Rotation in [C II]-emitting gas in two galaxies at a redshift of 6.8

机译:两个星系中发射[C II]的气体的旋转为红移6.8

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摘要

The earliest galaxies are thought to have emerged during the first billion years of cosmic history, initiating the ionization of the neutral hydrogen that pervaded the Universe at this time. Studying this 'epoch of reionization' involves looking for the spectral signatures of ancient galaxies that are, owing to the expansion of the Universe, now very distant from Earth and therefore exhibit large redshifts. However, finding these spectral fingerprints is challenging. One spectral characteristic of ancient and distant galaxies is strong hydrogen-emission lines (known as Lyman-alpha lines), but the neutral intergalactic medium that was present early in the epoch of reionization scatters such Lyman-alpha photons. Another potential spectral identifier is the line at wavelength 157.4 micrometres of the singly ionized state of carbon (the [C II] lambda = 157.74 mu m line), which signifies cooling gas and is expected to have been bright in the early Universe. However, so far Lyman-alpha-emitting galaxies from the epoch of reionization have demonstrated much fainter [C II] luminosities than would be expected from local scaling relations1-5, and searches for the [C II] line in sources without Lyman-a emission but with photometric redshifts greater than 6 (corresponding to the first billion years of the Universe) have been unsuccessful. Here we identify [C II]. = 157.74 mu m emission from two sources that we selected as high-redshift candidates on the basis of near-infrared photometry; we confirm that these sources are two galaxies at redshifts of z = 6.8540 +/- 0.0003 and z = 6.8076 +/- 0.0002. Notably, the luminosity of the [C II] line from these galaxies is higher than that found previously in star-forming galaxies with redshifts greater than 6.5. The luminous and extended [C II] lines reveal clear velocity gradients that, if interpreted as rotation, would indicate that these galaxies have similar dynamic properties to the turbulent yet rotation-dominated disks that have been observed in Ha-emitting galaxies two billion years later, at 'cosmic noon'.
机译:据认为,最早的星系是在宇宙历史的前十亿年出现的,它引发了当时弥漫宇宙的中性氢的电离。研究这种“电离时代”涉及寻找古代星系的光谱特征,这些星系由于宇宙的膨胀而现在离地球很远,因此表现出大的红移。然而,找到这些光谱指纹是具有挑战性的。古代和遥远星系的一个光谱特征是强氢发射谱线(称为莱曼-α线),但是在电离时代早期出现的中性银河系中间介质会散射这种莱曼-α光子。另一个潜在的光谱识别器是碳单离子态的波长为157.4微米的线([C II]λ= 157.74μm线),它表示冷却气体,并有望在早期宇宙中变亮。然而,到目前为止,离电离时代发射Lyman-α的星系已显示出比局部缩放关系1-5预期的更微弱的[C II]光度,并在没有Lyman-a的源中搜索[C II]线发射,但光度红移大于6(对应于宇宙的前十亿年)一直没有成功。在这里我们确定[C II]。 =我们根据近红外光度法选择了两个作为高红移候选光源的发射量为157.74微米;我们确认这些源是两个在z = 6.8540 +/- 0.0003和z = 6.8076 +/- 0.0002的红移的星系。值得注意的是,来自这些星系的[C II]线的光度高于先前在红移大于6.5的恒星形成星系中发现的光度。 [C II]发光线和延伸线显示出清晰的速度梯度,如果将其解释为自转,则表明这些星系具有与二十亿年后在发射Ha的星系中观察到的湍流但自转为主的盘相似的动力学特性。 ,在“宇宙中午”。

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  • 来源
    《Nature》 |2018年第7687期|178-181|共4页
  • 作者单位

    Univ Cambridge, Cavendish Lab, 19 JJ Thomson Ave, Cambridge CB3 0HE, England|Univ Cambridge, Kavli Inst Cosmol, Madingley Rd, Cambridge CB3 0HA, England;

    Leiden Univ, Leiden Observ, NL-2300 RA Leiden, Netherlands;

    Univ Cambridge, Cavendish Lab, 19 JJ Thomson Ave, Cambridge CB3 0HE, England|Univ Cambridge, Kavli Inst Cosmol, Madingley Rd, Cambridge CB3 0HA, England;

    Univ Geneva, Observ Geneve, Chemin Maillettes 51, CH-1290 Versoix, Switzerland;

    Leiden Univ, Leiden Observ, NL-2300 RA Leiden, Netherlands;

    Univ Calif Santa Cruz, UCO Lick Observ, 1156 High St, Santa Cruz, CA 95064 USA;

    Leiden Univ, Leiden Observ, NL-2300 RA Leiden, Netherlands;

    Space Telescope Sci Inst, 3700 San Martin Dr, Baltimore, MD 21218 USA;

    Univ Chile, Dept Astron, Casilla 36-D, Santiago 7591245, Chile|CATA, Camino Observ 1515, Santiago 7591245, Chile;

    Leiden Univ, Leiden Observ, NL-2300 RA Leiden, Netherlands;

    Univ Louisville, Dept Phys & Astron, Louisville, KY 40292 USA;

    Univ Cambridge, Cavendish Lab, 19 JJ Thomson Ave, Cambridge CB3 0HE, England|Univ Cambridge, Kavli Inst Cosmol, Madingley Rd, Cambridge CB3 0HA, England;

    Johns Hopkins Univ, Dept Phys & Astron, 3400 North Charles St, Baltimore, MD 21218 USA;

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  • 入库时间 2022-08-18 02:51:26

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