Papers
Topics
Authors
Recent
Search
2000 character limit reached

Extreme Enrichment at Cosmic Dawn: Three FeII-Strong Quasars at z > 6 from the JWST Aether survey

Published 16 Sep 2026 in astro-ph.GA | (2609.19459v1)

Abstract: We present three outliers on the quasar main sequence at z>6, as revealed by JWST/NIRSpec IFU observations from the Aether survey, a program targeting ~200 quasars at cosmic dawn. The quasars, J0216-5226, J0320-3521, and J1429+5447, exhibit exceptionally strong FeII emission and weak Hββ and [OIII] lines, indicating rapid chemical enrichment within the first Gyr of cosmic history. Their FeII strengths (RFeII,λ4570EW<em>FeII/EW</em>HβR_{\rm{FeII},\lambda4570} \equiv \rm{EW}<em>{\rm{FeII}}/\rm{EW}</em>{\rm{H}β}) range between ~2.5-3.6, placing them among the top ~3% of SDSS quasars at (0z10\lesssim z\lesssim 1). The Hαα emission lines of J0216-5226 and J1429+5447 imply black hole masses of 17×10<sup>9\sim1-7\times10<sup>9 M<em><em>{\odot} with λ</em>Edd0.10.6λ</em>{\rm{Edd}}\sim0.1-0.6, comparable to typical high-z quasars, although virial black hole masses may be systematically overestimated in strong FeII emitters. In contrast, J0320-3521 hosts a lower mass black hole of 0.22×10<sup>9\sim0.2-2\times10<sup>9 M<em><em>{\odot}, suggesting possible super-Eddington rate accretion with λ</em>Eddλ</em>{\rm{Edd}}~0.5-6.0. The IFU data of J0320-3521 reveal a distinct emission-line region at a projected distance of ~1.5 kpc, consistent with either an interacting companion or ionized gas associated to the quasar. We further identify a complex environment around J1429+5447, including two candidate companion galaxies or extended ionized gas structures. These quasars with bright emission-line regions, J0320-3521 and J1429+5447, are radio-loud sources, while J0216-5226 remains undetected in radio (R5GHz,3σ4R_{5\rm{GHz,} \,3σ}\lesssim4). Together, these results confirm previous findings that highly enriched, rapidly growing black holes were already in place at cosmic dawn. Despite the small sample size, our results further highlight the diversity in environment and radio-jet properties among quasars that otherwise share the same extreme region of the quasar fundamental plane.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.