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GALAXY FORMATION AT HIGH REDSHIFTS

机译:高红移的星系形成

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SENSITIVE optical surveys have revealed(1) a large population of 'faint blue galaxies', which are believed to be young galaxies observed close to their time of formation(2). But there has been considerable uncertainty regarding the epochs at which these galaxies are observed, owing to the difficulties inherent in determining spectroscopic redshifts for very faint objects. Here, by modelling the numbers and colours of galaxies at the faintest detection limits, we show that the faint blue galaxies are likely to lie at high redshift (z approximate to 2). This conclusion holds regardless of whether the Universe is assumed to be open of at the critical density (flat). In an open universe, the data are consistent with galaxy models in which star formation rates decay exponentially with decreasing redshift, whereas the assumption of a flat universe requires the addition of a population of galaxies which are seen only at high redshift. [References: 29]
机译:敏感的光学调查显示(1)大量“微弱的蓝色星系”,据信是在它们形成时已接近的年轻星系(2)。但是,由于很难确定非常微弱的物体的光谱红移,因此对于观测这些星系的时代存在很大的不确定性。在这里,通过在最暗的检测极限上对星系的数量和颜色进行建模,我们显示出微弱的蓝色星系很可能处于高红移状态(z约为2)。无论是否假定宇宙在临界密度(平坦)下都是开放的,这一结论都成立。在开放的宇宙中,数据与星系模型一致,在该模型中,恒星形成速率随着红移的减小而呈指数衰减,而假设平坦的宇宙则需要增加仅在高红移时才能看到的星系群。 [参考:29]

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