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The faint radio sky: radio astronomy becomes mainstream

机译:微弱的无线电天空:射频天文学成为主流

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Radio astronomy has changed. For years it studied relatively rare sources, which emit mostly non-thermal radiation across the entire electromagnetic spectrum, i.e. radio quasars and radio galaxies. Now, it is reaching such faint flux densities that it detects mainly star-forming galaxies and the more common radio-quiet active galactic nuclei. These sources make up the bulk of the extragalactic sky, which has been studied for decades in the infrared, optical, and X-ray bands. I follow the transformation of radio astronomy by reviewing the main components of the radio sky at the bright and faint ends, the issue of their proper classification, their number counts, luminosity functions, and evolution. The overall "big picture" astrophysical implications of these results, and their relevance for a number of hot topics in extragalactic astronomy, are also discussed. The future prospects of the faint radio sky are very bright, as we will soon be flooded with survey data. This review should be useful to all extragalactic astronomers, irrespective of their favourite electromagnetic band(s), and even stellar astronomers might find it somewhat gratifying.
机译:射频天文改变了。多年来,它研究了相对罕见的来源,其在整个电磁谱中发射了非热辐射,即无线电额字和无线电星系。现在,它正在达到这种微弱的助焊剂密度,它主要检测到形成星形星系和更常见的无线电安静活性银核。这些来源构成了大部分刷新的天空,已经在红外,光学和X射线带中研究了几十年。我通过在明亮和微弱的目的中审查无线电天空的主要组成部分来遵循无线电天文的转变,其适当分类的问题,它们的数量计数,亮度函数和演变。还讨论了这些结果的整体“大图”天体物理学意义,以及它们对近似突出天文学的许多热门话题的相关性。淡淡的无线电天空的未来前景非常明亮,因为我们将很快被调查数据淹没。这种审查对于所有刷新的天文学家来说都是有用的,无论他们最喜欢的电磁频段,甚至恒星天文学家都可能会发现它有点令人欣慰。

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