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Unusual spectral energy distribution of a galaxy previously reported to be at redshift 6.68

机译:先前报道的星系的光谱能量异常分布为红移6.68

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摘要

Observations of distant galaxies are important both for understanding how galaxies form and for probing the physical conditions of the Universe at early times. It is, however, very difficult to identify galaxies at redshifts z > 5, because they are so faint and have few spectral characteristics. We previously reported the probable identification of a galaxy at z = 6.68, based on one line and an apparent break in the spectrum just shortwards of that, which we interpreted as Lyman α emission and the Lyman α break, where photons with shorter wavelengths are absorbed by the intervening neutral hydrogen gas. Here we present optical photometry that shows moderate detections of light in the B- and V-band images, which are inconsistent with the expected absence of flux shortwards of the Lyman α break for a galaxy at z > 5, and inconsistent with the previous flux measurement. Moreover, the spectral energy distribution for this object cannot readily be fitted by any known galaxy spectral template at any redshift, so the redshift is undetermined.
机译:遥远星系的观测对于了解星系的形成方式以及早期探测宇宙的物理条件都非常重要。但是,很难识别红移z> 5的星系,因为它们是如此微弱并且几乎没有光谱特征。先前我们曾报道过,可能会根据一条直线和光谱的一个短时光谱裂变,在z = 6.68处识别出一个星系,我们将其解释为莱曼α发射和莱曼α断裂,其中吸收了较短波长的光子通过中间的中性氢气。在这里,我们介绍的光学光度法显示了对B波段和V波段图像的适度检测,这与预期的z> 5的星系的莱曼α断裂的通量不足不符,并且与先前的通量不一致。测量。此外,该物体的光谱能量分布在任何红移下都无法轻易地被任何已知的星系光谱模板拟合,因此该红移不确定。

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