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◆ The Astrophysical Journal2026-01-21· Physics

Discovery of an X-Ray Luminous Radio-loud Quasar at <i>z</i> = 3.4: A Possible Transitional Super-Eddington Phase

S. Obuchi, Kohei Ichikawa, Satoshi Yamada, Nozomu Kawakatu, Teng Liu, Naoki Matsumoto, Andrea Merloni, Kosuke Takahashi, Ingyin Zaw, Xiaoyang Chen, Kazuhiro Hada, Zsofi Igo, Hyewon Suh, Julien Wolf

原始摘要(英文原文)· Original abstract
Abstract We report the multiwavelength properties of eROSITA Final Equatorial Depth Survey (eFEDS) J084222.9+001000 (hereafter ID830), a quasar at z = 3.4351, identified as the most X-ray luminous radio-loud quasar in the eFEDS field. ID830 shows a rest-frame 0.5–2 keV luminosity of log ( L 0.5 − 2 keV / erg s − 1 ) = 46.20 ± 0.12 , with a steep X-ray photon index (Γ = 2.43 ± 0.21), and a significant radio counterpart detected with the Very Large Array FIRST 1.4 GHz and Very Large Array Sky Survey 3 GHz bands. The rest-frame UV to optical spectra from Sloan Digital Sky Survey and Subaru/MOIRCS J band show a dust-reddened quasar feature with A V = 0.39 ± 0.08 mag, and the expected bolometric active galactic nuclei luminosity from the dust-extinction-corrected UV luminosity reaches L bol,3000Å = (7.62 ± 0.31) × 10 46 erg s −1 . We estimate a black hole mass of M BH = (4.40 ± 0.72) × 10 8 M ⊙ based on the Mg II λ 2800 emission-line width, and Eddington ratios from the dust-extinction-corrected UV continuum luminosity and X-ray luminosity that reach λ Edd,UV = 1.44 ± 0.24 and λ Edd,X = 12.8 ± 3.9, respectively, both indicating super-Eddington accretion. ID830 shows a high ratio of UV to X-ray luminosities, α OX = −1.20 ± 0.07 (or α OX = −1.42 ± 0.07 after correcting for jet-linked X-ray excess), higher than quasars and little red dots in the super-Eddington phase with similar UV luminosities, with α OX < −1.8. Such a high α OX suggests the coexistence of a prominent radio jet and X-ray corona in this high-Eddington-accretion phase. We propose that ID830 may be in a transitional phase after an accretion burst, evolving from a super-Eddington to a sub-Eddington state, which could naturally describe the high α OX .
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Discovery of an X-Ray Luminous Radio-loud Quasar at <i>z</i> = 3.4: A Possible Transitional Super-Eddington Phase — 科研速览 Science Skim