High Metal Content of Highly Accreting Quasars: Analysis of an Extended Sample
Karla Garnica, C. Alenka Negrete, Paola Marziani, Deborah Dultzin,, Marzena \'Sniegowska, and Swayamtrupta Panda

TL;DR
This study analyzes UV spectra of intermediate-redshift quasars to confirm extremely high metallicities in their broad line regions, revealing deviations in element abundance ratios and suggesting complex nuclear and circumnuclear star formation processes.
Contribution
It extends previous analyses to a larger sample, confirming very high metallicities and element abundance deviations in highly accreting quasars using multi-component spectral fitting and photoionization modeling.
Findings
Virialized gas shows metallicity >10Z_sun
Non-virialized clouds have metallicity >5Z_sun
Systematic differences in element abundance ratios
Abstract
We present an analysis of UV spectra of quasars at intermediate redshifts believed to belong to the extreme Population A (xA), aimed to estimate the chemical abundances of the broad line emitting gas. We follow the approach described in a previous work extending the sample to 42 sources. Our aim is to test the robustness of the analysis carried out previously, as well as to confirm the two most intriguing results of this investigation: evidence of very high solar metallicities, and deviation of the relative abundance of elements with respect to solar values. The basis of our analysis is multi-component fits in three regions of the spectra centered at 1900, 1550 and 1400 A in order to deblend the broad components of AlIII1860, CIII]1909, CIV1549, HeII1640, and SiIV1397+OIV]1402 and their blue excess. By comparing the observed flux ratios of these components with the same ratios predicted…
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Taxonomy
TopicsAstronomy and Astrophysical Research · Astrophysics and Star Formation Studies · Phase Equilibria and Thermodynamics
