Hunting Wandering 3<z<8 Black Holes: Spatial Offsets in Ionization Ratio and Continuum Emission
Urvi Thakurdesai, Anthony J. Taylor, Steven L. Finkelstein, Gene C. K. Leung, Oscar A. Chavez Ortiz, Jonathan R. Trump, Bren E. Backhaus, Nikko J. Cleri, Francesco D'Eugenio, Fabio Pacucci, Anton M. Koekemoer, Pablo Arrabal Haro, Micaela Bagley, Mark Dickinson, Jeyhan Kartaltepe, Casey Papovich, Nor Pirzkal
astro-ph.GA
Submitted: 2026-06-29
Comments: 15 pages, 8 figures, 1 table. Accepted for publication in ApJ. V2: updated to match journal proofs
License: http://creativecommons.org/licenses/by/4.0/
The gist: The early growth and assembly of supermassive black holes (SMBHs) remain key topics of interest in galaxy evolution.
Terminology
Abstract
The early growth and assembly of supermassive black holes (SMBHs) remain key topics of interest in galaxy evolution. One of the scenarios predicted by theoretical models is that frequent minor mergers and asymmetric gas inflows may cause SMBHs to temporarily reside off-center within their host galaxies in the early universe. To observationally test this scenario, we investigate whether spatially offset ionization signatures-which may be indicative of active galactic nuclei (AGN)-can be identified. Using JWST NIRSpec PRISM spectroscopy from the Cosmic Evolution Early Release Science (CEERS) survey, we analyze the 2D spectra of 90 high-redshift galaxies (3 < z < 8), including two known broad-line AGN. By measuring key emission lines such as H alpha, H beta, [OIII] lambda 5007, [NeIII] lambda 3868, and [OII] lambda lambda 3727, 3729 we derive spatial flux ratio profiles, and focus on [OIII]/H beta as a tracer of high-ionization mechanisms that may indicate AGN activity. We identify 26 galaxies (30% of the sample) with significant localized peaks in [OIII]/H beta. Out of these 26 galaxies, 12 sources (46%) exhibit significant spatial offsets between the peak [OIII]/H beta ratio and the stellar continuum center. Six of these sources show the highest amount (> 1.5) pixel spatial offsets. This spatial offset between ionization structure and stellar centers offers a promising avenue to probe early SMBH evolution and its connection to galaxy formation.
Sources
- Massive black holes in galactic nuclei: Theory and Simulations
- Optical Strong Line Ratios Cannot Distinguish Between Stellar Populations and Accreting Black Holes at High Ionization Parameters and Low Metallicities
- The Little Red Dots Are Direct Collapse Black Holes
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