论文标题

第一个超级质量黑洞的闪闪发光:ii。新的高红移射线星系候选人样本

The GLEAMing of the first supermassive black holes: II. A new sample of high-redshift radio galaxy candidates

论文作者

Broderick, J. W., Drouart, G., Seymour, N., Galvin, T. J., Wright, N., Rosell, A. Carnero, Chhetri, R., Dannerbauer, H., Driver, S. P., Morgan, J. S., Moss, V. A., Prabu, S., Afonso, J. M., De Breuck, C., Emonts, B. H. C., Franzen, T. M. O., Gutiérrez, C. M., Hancock, P. J., Heald, G. H., Hurley-Walker, N., Ivison, R. J., Lehnert, M. D., Noirot, G., Read, M., Shabala, S. S., Stern, D., Sutherland, W. J., Sutorius, E., Turner, R. J., Vernet, J.

论文摘要

虽然定期在RedShifts $ Z> 6 $上发现毫无障碍和无线电的主动银河核,但它们被遮盖的和无线电的同行仍然难以捉摸。我们以我们成功的试点研究为基础,展示了一个新的低频选择的候选候选人高红色射电射线星系(HZRGS),该样本在天空区域大20倍。我们已经完善了我们的选择技术,其中我们从银河系和静脉外的全梅尔奇Murchison Widefield阵列(GLEAM)调查中选择具有弯曲无线电光谱的来源。 In combination with the requirements that our GLEAM-selected HzRG candidates have compact radio morphologies and be undetected in near-infrared $K_{\rm s}$-band imaging from the Visible and Infrared Survey Telescope for Astronomy Kilo-degree Infrared Galaxy (VIKING) survey, we find 51 new candidate HzRGs over a sky area of​​ approximately 1200 deg$^2$.我们的样本还包括来自试点研究的两个来源:目前已知的第二遥远的射电星系,$ z = 5.55 $,另一个来源可能在$ z \ sim 8 $中。我们介绍了精致的选择技术并分析样品的性能。我们通过补充澳大利亚望远镜紧凑型阵列(5.5和9 GHz)的新观测值来补充GLEAM数据,在74 MHz和9 GHz之间建模宽带无线电光谱。此外,$ k _ {\ rm s} $ - 来自非常大的望远镜上的高敏感广场$ k $ band Imager(Hawk-i)的乐队成像,以及南部Herschel Herschel天体Terophertial Terahertical Terhertical Terophertical terherphertical terherphertical terherphertical terherphertical terherphertical terherphertical terophersical大面积调查区$ k _ {\ rm s} $ - rm s} $ - 乐队调查(Sharks)均提供了五源。我们讨论了在样本中找到非常遥远的射电星系的前景,可能在$ z \ gtrsim 6.5 $的回报时期内。

While unobscured and radio-quiet active galactic nuclei are regularly being found at redshifts $z > 6$, their obscured and radio-loud counterparts remain elusive. We build upon our successful pilot study, presenting a new sample of low-frequency-selected candidate high-redshift radio galaxies (HzRGs) over a sky area twenty times larger. We have refined our selection technique, in which we select sources with curved radio spectra between 72-231 MHz from the GaLactic and Extragalactic All-sky Murchison Widefield Array (GLEAM) survey. In combination with the requirements that our GLEAM-selected HzRG candidates have compact radio morphologies and be undetected in near-infrared $K_{\rm s}$-band imaging from the Visible and Infrared Survey Telescope for Astronomy Kilo-degree Infrared Galaxy (VIKING) survey, we find 51 new candidate HzRGs over a sky area of approximately 1200 deg$^2$. Our sample also includes two sources from the pilot study: the second-most distant radio galaxy currently known, at $z=5.55$, with another source potentially at $z \sim 8$. We present our refined selection technique and analyse the properties of the sample. We model the broadband radio spectra between 74 MHz and 9 GHz by supplementing the GLEAM data with both publicly available data and new observations from the Australia Telescope Compact Array at 5.5 and 9 GHz. In addition, deep $K_{\rm s}$-band imaging from the High-Acuity Widefield $K$-band Imager (HAWK-I) on the Very Large Telescope and from the Southern Herschel Astrophysical Terahertz Large Area Survey Regions $K_{\rm s}$-band Survey (SHARKS) is presented for five sources. We discuss the prospects of finding very distant radio galaxies in our sample, potentially within the epoch of reionisation at $z \gtrsim 6.5$.

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