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SDSS-IV MaNGA: Star Formation Cessation in Low-redshift Galaxies. III. Dependence on Quenching Criteria

Published 25 Aug 2026 in astro-ph.GA | (2608.24201v1)

Abstract: This paper is the third in a series of studies investigating star formation cessation in nearby galaxies on kiloparsec scales. Using the final SDSS-IV MaNGA data release, we ask how the inferred importance of global, local, and environmental properties depends on the operational definition of quenched regions. We classify spaxels as star-forming, reliably quenched, or potentially quenched by accounting for measurement uncertainties, and train random forest classifiers with a parameter set chosen for direct comparison with previous work. For reliably quenched regions, the local stellar mass surface density Σ<em>Σ<em>\ast consistently has the highest feature importance, independent of quenching definition. By contrast, the high importance of central velocity dispersion σcσ_c, previously interpreted as evidence for galaxy-wide AGN feedback, is recovered mainly when potentially quenched regions are included. The leading parameter also varies with stellar mass: Σ</em>1kpcΣ</em>{\rm 1kpc} is most important below 10<sup>10.2M\sim10<sup>{10.2}\,\textrm{M}_{\odot}, whereas local quantities such as Σ<em>Σ<em>\ast and σ</em>σ</em>\ast become more prominent at high masses. These results show that quenching criteria and uncertainty treatment can reconcile apparently discrepant feature-importance studies. AGN-related processes may contribute to ambiguous regions, but the reliably quenched population is most tightly linked to high local stellar density.

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