Jianwei Lyu, 建伟 吕, George H. Rieke, Meredith Stone, Jane Morrison, Stacey Alberts, Xiangyu Jin, Yongda Zhu, Weizhe Liu, 伟哲 刘 and Jinyi Yang
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摘要

在再电离时代,大多数最亮的类星体都是在接近或超过爱丁顿极限的地方吸积的,这标志着原始超大质量黑洞(SMBHs)的蓬勃发展。然而,它们的后续演化和环境影响仍然特征不清。我们展示了JWST/NIRSpec棱镜积分场单元对HSC J2239+0207的观测结果,这是一颗z∼6.25的低亮度类星体,相对于其宿主星系,很可能处于质量集合的后期阶段,具有超大质量黑洞。利用Hβ和Hα宽发射线,我们估算出SMBH的质量为MBH ∼ 3 × 108 M⊙,并确认了其在λEdd ∼ 0.4时的亚爱丁顿吸积。强烈的 Fe ii 发射和典型大小的邻近区表明这是一个富含金属的高度演化系统。在远紫外波段,这个类星体呈现出很强的宽吸收线特征,表明存在高速风(ν ∼ 104 km s-1)。同时,从类星体的连续波和宽线巴尔默衰减中可以推断出极小的尘埃变红,这表明沿极地方向几乎没有尘埃。最有趣的是,我们在距离类星体 5 kpc 的地方发现了一个气体伴星,它的[O iii]/Hβ 比值很高(≳10),很可能是被活动星系核(AGN)反馈吹走的外流气体。这些结果突出表明,HSC J2239+0207 很可能是一颗正在褪变的类星体,为研究早期宇宙中的 SMBH 演化、AGN 反馈以及 AGN 与星系的相互作用提供了难得的见解。
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Fading Light, Fierce Winds: JWST Snapshot of a Sub-Eddington Quasar at Cosmic Dawn
The majority of most luminous quasars during the epoch of reionization accrete near or above the Eddington limit, marking the vigorous growth of primitive supermassive black holes (SMBHs). However, their subsequent evolution and environmental impact remain poorly characterized. We present JWST/NIRSpec prism integral field unit observations of HSC J2239+0207, a low-luminosity quasar at z ∼ 6.25 likely in a late stage of mass assembly with an overmassive SMBH relative to its host galaxy. Using Hβ and Hα broad emission lines, we estimate an SMBH mass MBH ∼ 3 × 108 M⊙ and confirm its sub-Eddington accretion at λEdd ∼ 0.4. Strong Fe ii emission and a proximity zone of typical size suggest a metal-rich, highly evolved system. In the far-UV, this quasar presents strong broad absorption line features, indicative of high-velocity winds (ν ∼ 104 km s−1). Meanwhile, minimal dust reddening is inferred from the quasar continuum and broad-line Balmer decrement, suggesting little dust along the polar direction. Most interestingly, we identify a gas companion ∼5 kpc from the quasar with a high [O iii]/Hβ ratio (≳10), likely representing outflowing gas blown away by active galactic nucleus (AGN) feedback. These results highlight HSC J2239+0207 as a likely fading quasar in transition, providing rare insights into SMBH evolution, AGN feedback, and AGN–galaxy interactions in the early Universe.
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