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AEON-z5: A Candidate AGN-driven Outflow Enriching the Circumgalactic Medium at z5.23z\simeq5.23

Published 8 Sep 2026 in astro-ph.GA | (2609.08264v1)

Abstract: The dispersal of chemically enriched gas from galaxies into their surroundings is a key process in galaxy evolution, yet direct observational evidence at z>5 remains scarce. We present AEON-z5, a galaxy at z~5.23 in the COSMOS field comprising a compact continuum-emitting core surrounded by an extended, line-dominated ionized nebula. JWST/NIRCam imaging shows that Hαα+[N II] and Hββ+[O III] emission extends to projected radii of >4 kpc - 2-2.5 times the typical effective radius at the host stellar mass - reaching the outer ISM and the inner CGM. F444W grism data reveal a highly asymmetric Hαα+[N II] profile, which we interpret as a bipolar outflow and decompose into three kinematic components. The dominant component has a flux-weighted velocity offset of ~+489 km/s and FWHM~630 km/s, with a wing reaching v84v_{84}~792 km/s. A tentative detached feature at ΔvLOSΔv_{LOS}~2800 km/s, detected at 1.5σσ in the 1D spectrum (2.4σσ in the 2D fit), may trace an outflow clump. These kinematics are most coherently explained by an AGN in the core. For the extended nebula, we derive a velocity curve shifting redward with radius, reaching 200-400 km/s at rpr_p~1.3-2.5 kpc - a trend that may reflect an accelerating outflow, corotating gas, or recycled inflow viewed in projection. Crucially, the measured [N II]/Hαα ratios imply near-solar N2-based abundances (0.7-1.0 ZZ_\odot), remaining >0.37 ZZ_\odot after allowing for AGN excitation and calibration systematics. The combination of large extent, enrichment, and extreme kinematics identifies AEON-z5 as a candidate snapshot of feedback-driven metal transport, offering a direct view of how early AGN activity may redistribute chemically processed gas into the CGM within the first ~1.1 billion years.

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