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arXiv:2205.05813·v2·Cosmology and Nongalactic Astrophysics

Consistency study of high- and low-accreting Mg ii quasars: No significant effect of the Fe ii to Mg ii flux ratio on the radius-luminosity relation dispersion

Narayan Khadka🇺🇸 · Michal Zajaček🇨🇿 · Swayamtrupta Panda🇵🇱 · Mary Loli Martínez-Aldama🇨🇱 · Bharat Ratra🇺🇸

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Abstract

We use observations of 66 reverberation-measured \Mgii\ quasars (QSOs) in the redshift range -- a subset of the 78 QSOs we previously studied that also have \rfe\ (flux ratio parameter of UV \Feii\ to \Mgii\ that is used as an accretion-rate proxy) measurements -- to simultaneously constrain cosmological model parameters and QSO 2-parameter and 3-parameter radius-luminosity () relation parameters in six different cosmological models. We find that these QSO relation parameters are independent of the assumed cosmological model and so these QSOs are standardizable through the relations. Also: (1) With the 2-parameter relation, we find that the low-\rfe\ and high-\rfe\ data subsets obey the same relation within the error bars. (2) Extending the 2-parameter relation to a 3-parameter one does not result in the hoped-for reduction in the intrinsic dispersion of the relation. (3) Neither of the 3-parameter relations provide a significantly better fit to the measurements than does the 2-parameter relation. These are promising results for the on-going development of \Mgii\ cosmological probes. The first and third of these results differ significantly from those we found elsewhere from analyses of reverberation-measured \hb\ QSOs.

Comments: 9 figures, 21 pages. arXiv admin note: text overlap with arXiv:2112.00052

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