Metal Enrichment due to Embedded Stars in AGN Discs
Jiamu Huang, Douglas N. C. Lin, Gregory Shields

TL;DR
This paper investigates elemental abundances in AGN emission regions, proposing a model where embedded stars in accretion discs influence metallicity and chemical signatures, supported by photoionization models and observational data.
Contribution
It introduces the SEPAD model explaining metallicity and elemental enhancements through in situ stellar evolution and pollution in AGN discs, a novel approach to AGN chemical enrichment.
Findings
He/H enhancements exceed normal chemical evolution expectations.
Super-solar alpha element abundances are confirmed.
Metallicity remains constant across redshifts.
Abstract
We separately assess elemental abundances in AGNs' broad and narrow emission line regions (BLR and NLR), based on a critical assessment of published results together with new photoionization models. We find 1) He/H enhancements in some AGN, exceeding what can be explained by normal chemical evolution and confirm 2) super-solar {\alpha} abundance, though to a lesser degree than previously reported. We also reaffirm 3) a N/O ratio consistent with secondary production; 4) solar or slightly sub-solar Fe abundance; and 5) red-shift independent metallicity, in contrast with galactic chemical evolution. We interpret 6) the larger metallicity in the BLR than NRL in terms of an in situ stellar evolution and pollution in AGN discs (SEPAD) model. We attribute: a) the redshift independence to the heavy element pollutants being disposed into the disc and accreted onto the central supermassive black…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Mechanics and Biomechanics Studies · Astronomy and Astrophysical Research
