论文标题

Mightee:深1.4 GHz源计数和恒星形成星系和活性银核的天空温度贡献

MIGHTEE: Deep 1.4 GHz Source Counts and the Sky Temperature Contribution of Star Forming Galaxies and Active Galactic Nuclei

论文作者

Hale, C. L., Whittam, I. H., Jarvis, M. J., Best, P. N., Thomas, N. L., Heywood, I., Prescott, M., Adams, N., Afonso, J., An, Fangxia, Bowler, R. A. A., Collier, J. D., Cook, R. H. W., Davé, R., Frank, B. S., Glowacki, M., Hatfield, P. W., Lovell, S. Kolwa C. C., Maddox, N., Marchetti, L., Morabito, L. K., Murphy, E., Prandoni, I., Randriamanakoto, Z., Taylor, A. R.

论文摘要

我们提出了最深的1.4 GHz源数量,从$ \ sim $ 5度$^2 $的连续科学早期数据发行的Meerkat International Gigahertz分层的静脉外探索(Mightee)调查降至$ s_ {1.4 \ textrm {ghz}}}} \ sim $ 15 $ 15 $ $ $ $ $ $ $ $。利用两个对两个外层次场(Cosmos和XMM-LSS)的观察,我们提供了一项全面的调查,以纠正调查中原始源计数的不完整,以了解真正的潜在源源数量。我们使用多种模拟来说明:源检测和表征,聚类和假定源模型中用于模拟源中源并表征源计数不完整的假设源模型中的变化。我们介绍了这些深层源计数分布,并使用它们来研究外层次源对天空背景温度在1.4 GHz时使用相对较大的天空面积的贡献。然后,我们使用涵盖{Cosmos场的子集的辅助数据的财富来研究活性银河核(AGN)和恒星形成星系(SFG)对源数和天空背景温度的特定贡献。我们发现,与以前的深入研究相似,我们无法通过Arcade 2实验来调和天气温度。我们表明,AGN为无线电源提供了大多数贡献,但是SFGS的相对贡献急剧低于1 MJY,达到了总天空背景温度($ t_b \ sim $ 100 mk)的约15-25%的贡献,达到$ \ sim $ \ sim $ 15 $ $ $ $ $ $ Jy。

We present deep 1.4 GHz source counts from $\sim$5 deg$^2$ of the continuum Early Science data release of the MeerKAT International Gigahertz Tiered Extragalactic Exploration (MIGHTEE) survey down to $S_{1.4\textrm{GHz}}\sim$15 $μ$Jy. Using observations over two extragalactic fields (COSMOS and XMM-LSS), we provide a comprehensive investigation into correcting the incompleteness of the raw source counts within the survey to understand the true underlying source count population. We use a variety of simulations that account for: errors in source detection and characterisation, clustering, and variations in the assumed source model used to simulate sources within the field and characterise source count incompleteness. We present these deep source count distributions and use them to investigate the contribution of extragalactic sources to the sky background temperature at 1.4 GHz using a relatively large sky area. We then use the wealth of ancillary data covering{a subset of the COSMOS field to investigate the specific contributions from both active galactic nuclei (AGN) and star forming galaxies (SFGs) to the source counts and sky background temperature. We find, similar to previous deep studies, that we are unable to reconcile the sky temperature observed by the ARCADE 2 experiment. We show that AGN provide the majority contribution to the sky temperature contribution from radio sources, but the relative contribution of SFGs rises sharply below 1 mJy, reaching an approximate 15-25% contribution to the total sky background temperature ($T_b\sim$100 mK) at $\sim$15 $μ$Jy.

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