Nitrogen-Loud Quasars from the Dark Energy Spectroscopic Instrument. I. Sample Selection and Basic Properties

arXiv:2609.11104 · astro-ph.GA · Submitted 2026-09-10 · Read on arXiv

astro-ph.GA

Submitted: 2026-09-10

Updated: 2026-09-10

Comments: Submitted to ApJS

License: http://creativecommons.org/licenses/by/4.0/

The gist: We present the largest sample to date of nitrogen-loud (N-loud) quasars with strong broad N IV] lambda1486 and/or N III] lambda1750 emission lines over the redshift range 1.6 < z < 4.3, selected from

Terminology

Abstract

We present the largest sample to date of nitrogen-loud (N-loud) quasars with strong broad N IV] lambda1486 and/or N III] lambda1750 emission lines over the redshift range 1.6 < z < 4.3, selected from the Dark Energy Spectroscopic Instrument (DESI) Data Release 1. The final sample contains 1,993 N-loud quasars, corresponding to about 1.2% of the parent quasar sample. The L 1450 distribution of the N-loud quasars is broadly similar to that of the DESI parent sample, but their redshift distribution is distinct, with a stronger concentration around z about 2.5 --3. Their composite spectrum displays a broadly similar UV continuum shape to that of the parent quasars, while showing significantly enhanced broad nitrogen emission features, including N V, N IV], and N III]. Other metal emission features also show a moderate enhancement. Relative to a control sample matched in redshift and UV continuum luminosity, the N-loud quasars show systematically narrower broad C IV and Mg II emission lines, lower single-epoch virial black hole masses, and higher Eddington ratios, suggesting that N-loud quasars may preferentially appear during a relatively rapid black hole accretion phase. The radio-loud fraction is 10.1%, with the highest fraction among objects exhibiting both N III] and N IV] emission. The catalog provides a statistical baseline for future studies of nitrogen enhancement and its physical origin.

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