论文标题

搜索Herschel Bright Source(草药)样品中的镜头

A search for the lenses in the Herschel Bright Sources (HerBS) Sample

论文作者

Bakx, Tom J. L. C., Eales, Stephen, Amvrosiadis, Aristeidis

论文摘要

验证亚MM星系(SMG)是重力镜头的,需要用过度订阅的高分辨率观测站进行耗时的观察。在这里,我们旨在通过将其位置交叉到光学(SDSS)和近红外(Viking)调查中,以加强Herschel明亮来源(草药)中重力镜头的证据,以寻找前景镜头镜头银河候选者。对最亮的草药来源的解决的观察结果已经表明,大多数人都是镜头的,银河进化模型预测,$ \ sim $ \ sim $ 76%的总草药源的镜头是镜头的,尽管我们只有SDSS调查,我们只能识别25%来源的可能的前景镜头。但是,通过近红外维京人的调查,我们能够确定57%来源的可能的前景镜头,我们估计,即使我们在任何情况下都无法识别镜头,也有82%的草药来源在维京图像上具有镜头。我们发现,如果镜头是由单个星系完成的,则镜头和Herschel源之间的角偏移大于预期。我们还发现,镜头的草药源的比例下降,降低了500微米的通量密度,这是从星系演化模型中预期的。最后,我们将我们的统计维京跨识别应用于整个Herschel-Atlas目录,在那里我们还发现镜头源的数量下降了,随着500微米的通量密度降低。

Verifying that sub-mm galaxies (SMGs) are gravitationally lensed requires time-expensive observations with over-subscribed high-resolution observatories. Here, we aim to strengthen the evidence of gravitational lensing within the Herschel Bright Sources (HerBS) by cross-comparing their positions to optical (SDSS) and near-infrared (VIKING) surveys, in order to search for the foreground lensing galaxy candidates. Resolved observations of the brightest HerBS sources have already shown that most are lensed, and a galaxy evolution model predicts that $\sim$76% of the total HerBS sources are lensed, although with the SDSS survey we are only able to identify the likely foreground lenses for 25% of the sources. With the near-infrared VIKING survey, however, we are able to identify the likely foreground lenses for 57% of the sources, and we estimate that 82% of the HerBS sources have lenses on the VIKING images even if we cannot identify the lens in every case. We find that the angular offsets between lens and Herschel source are larger than that expected if the lensing is done by individual galaxies. We also find that the fraction of HerBS sources that are lensed falls with decreasing 500-micron flux density, which is expected from the galaxy evolution model. Finally, we apply our statistical VIKING cross-identification to the entire Herschel-ATLAS catalogue, where we also find that the number of lensed sources falls with decreasing 500-micron flux density.

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