The X-ray-Weak Tail of the Quasar Population: Physical Properties and Redshift Evolution of Variability-Selected AGN in eFEDS
P. Arévalo, J. Buchner, M. Salvato, P. Sánchez-Sáez, F. Bauer, M. L. Martínez-Aldama, D. Tubín-Arenas, J. Cerón-Meneses, R. Pucha, P. Lira, A. Merloni, M. Mezcua, M. Krumpe
TITANS · MPE, Germany · MPE, Germany · ESO-Garching · U. Tarapacá, Chile · TITANS · AIP, Germany · TITANS · University of Utah, USA · TITANS · MPE, Germany · IEEC, Barcelona, Spain · AIP, Germany
astro-ph.GA
Submitted: 2026-07-30
Comments: Submitted to A&A
Code: https://github.com/AstroChensj/Xstack
License: http://creativecommons.org/licenses/by-sa/4.0/
The gist: (abridged) Aims: To characterize variability-selected AGN candidates within the eROSITA Final Equatorial-Depth Survey (eFEDS), leveraging the synergy between optical variability and deep X-ray
Terminology
Abstract
(abridged) Aims: To characterize variability-selected AGN candidates within the eROSITA Final Equatorial-Depth Survey (eFEDS), leveraging the synergy between optical variability and deep X-ray observations by SRG (Spectrum Roentgen Gamma)/eROSITA, to compare the physical properties of AGN populations selected through complementary methods. Methods: We used a sample of AGN candidates selected via optical variability by Ar'evalo et al. and cross-match it to the X-ray selected eFEDS AGN sample. Spectroscopic characterizations are obtained for the matched samples from the Dark Energy Spectroscopic Instrument public data products. Results: We find a high classification purity with 98% candidates confirmed as broad-line AGN/QSOs. We identify a significant population (25%) that lack X-ray counterparts (X-U) in the eFEDS survey. We find that the X-D and X-U samples exhibit distinct physical properties and redshift distributions. The X-U sample peaks at z = 2 while the X-D sample at z =1, with nearly half of the variability-selected AGN at z > 2.5 remaining undetected in X-rays. This missing fraction can be attributed to K-correction effects and SED evolution with luminosity, mainly resulting in high accretion rate objects falling out of the X-D sample at higher redshifts. X-ray variability accounts for a part of the missing fraction but its dependence with redshift is less clear. Ensemble spectral analysis reveals that X-D sources have steeper optical continua and stronger broad emission lines than their X-U counterparts, while the forbidden and semi-forbidden lines have equal EWs in both samples. Finally, broad absorption line (BAL) features are found almost exclusively in the X-U population. This "missing" X-ray population must be accounted for when extrapolating X-ray-selected AGN to the broader Type I population and could impact cosmic estimates of massive black hole growth.
Sources
- The Pan-STARRS1 Surveys
- The DESI Experiment Part I: Science,Targeting, and Survey Design
- The DESI Experiment Part II: Instrument Design
- The DESI Experiment, a whitepaper for Snowmass 2013
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