The JWST EXCELS survey: Outflows in 1.5 < , z < 5 quiescent and recently quenched galaxies are likely relics from episodic AGN activity

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ID: 313525
2026
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Abstract
Abstract We investigate the presence and origin of neutral gas outflows and inflows in 13 post-starburst (PSB) and quiescent galaxies at redshifts 1.8 ≤ z ≤ 4.6, using JWST NIRSpec spectroscopy from the EXCELS survey. Na d absorption profiles reveal that 3 out of 13 exhibit blueshifted absorption indicative of outflows, and a further 2 objects show signs of inflowing gas. Outflow velocities range from ≈ 300 – 1200 km s−1, and we find gas flows are detected exclusively in objects that quenched <600 Myr ago. We derive mass outflow rates over two orders of magnitude higher than current levels of star formation in our sample, indicating that the winds are unlikely to be driven by supernovae. The majority of the outflow sample have anomalously high energy and momentum outflow rates compared to those predicted for current levels of star formation or AGN activity. We conclude that we are likely observing fossil outflows driven by previous, more luminous AGN activity which has since faded. We then compare with the eagle simulation to explore a potential ‘outflow cycle’, finding that our observations are consistent with a model in which z ~ 3 quiescent galaxies undergo short ≃ 5 Myr periods of AGN activity strong enough to drive outflows, which occur every ≃ 40 Myr on average. This AGN activity drives observable outflows that persist for up to ≃ 10 Myr after the AGN fades, followed by a ≃ 20 Myr lull, and a subsequent short inflow, which eventually re-ignites AGN activity, and the cycle repeats.
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Authors Elizabeth Taylor Adam C Carnall, David Maltby, O. Almaini, Ho-Hin Leung, Struan D Stevenson, Andrea Negri, Fergus Cullen, Vivienne Wild, R McLure, Alice E. Shapley, Karla Z. Arellano-Córdova, Ryan Begley, C Bondestam, Thomas de Lisle, Callum T. Donnan, J S Dunlop, Richard Ellis, Guillaume Hewitt, A M Koekemoer, Feng-Yuan Frey Liu, D J McLeod, Kate Rowlands, Ryan L. Sanders, D. Scholte, Maya Skarbinski, T M Stanton
Journal monthly notices of the royal astronomical society
Year 2026
DOI
10.1093/mnras/stag918
URL
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