UNCOVER Spectroscopy Confirms the Surprising Ubiquity of Active Galactic Nuclei in Red Sources at z > 5

ASTROPHYSICAL JOURNAL(2024)

引用 0|浏览18
暂无评分
摘要
The James Webb Space Telescope is revealing a new population of dust-reddened broad-line active galactic nuclei (AGN) at redshifts z greater than or similar to 5. Here we present deep NIRSpec/Prism spectroscopy from the Cycle 1 Treasury program Ultradeep NIRSpec and NIRCam ObserVations before the Epoch of Reionization (UNCOVER) of 15 AGN candidates selected to be compact, with red continua in the rest-frame optical but with blue slopes in the UV. From NIRCam photometry alone, they could have been dominated by dusty star formation or an AGN. Here we show that the majority of the compact red sources in UNCOVER are dust-reddened AGN: 60% show definitive evidence for broad-line H alpha with a FWHM > 2000 km s(-1), 20% of the current data are inconclusive, and 20% are brown dwarf stars. We propose an updated photometric criterion to select red z > 5 AGN that excludes brown dwarfs and is expected to yield >80% AGN. Remarkably, among all z(phot) > 5 galaxies with F277W - F444W > 1 in UNCOVER at least 33% are AGN regardless of compactness, climbing to at least 80% AGN for sources with F277W - F444W > 1.6. The confirmed AGN have black hole masses of 10(7)-10(9)M(circle dot). While their UV luminosities (-16 > M-UV > -20 AB mag) are low compared to UV-selected AGN at these epochs, consistent with percent-level scattered AGN light or low levels of unobscured star formation, the inferred bolometric luminosities are typical of 10(7)-10(9)M(circle dot) black holes radiating at similar to 10%-40% the Eddington limit. The number densities are surprisingly high at similar to 10(-5) Mpc(-3) mag(-1), 100 times more common than the faintest UV-selected quasars, while accounting for similar to 1% of the UV-selected galaxies. While their UV faintness suggests they may not contribute strongly to reionization, their ubiquity poses challenges to models of black hole growth.
更多
查看译文
关键词
Active galactic nuclei,High-redshift galaxies
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要