BASS. XLV. Quantifying Active Galactic Nuclei Selection Effects in the Chandra COSMOS-legacy Survey with BASS

Yarone M. Tokayer*, Michael J. Koss, C. Megan Urry, Priyamvada Natarajan, Richard Mushotzky, Mislav Baloković, Franz E. Bauer, Peter Boorman, Alessandro Peca, Claudio Ricci, Federica Ricci, Daniel Stern, Ezequiel Treister, Benny Trakhtenbrot

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Deep extragalactic X-ray surveys, such as the Chandra COSMOS-Legacy field (CCLS), are prone to be biased against active galactic nuclei (AGN) with high column densities due to their lower count rates at a given luminosity. To quantify this selection effect, we forward model nearby (z ∼ 0.05) AGN from the BAT AGN Spectroscopic Survey (BASS) with well-characterized (≳1000 cts) broadband X-ray spectra (0.5-195 keV) to simulate the CCLS absorption distribution. We utilize the BASS low-redshift analogs with similar luminosities to the CCLS ( L 2 − 10 keV int ∼ 1042−45 erg s), which are much less affected by obscuration and low-count statistics, as the seed for our simulations and follow the spectral fitting of the CCLS. Our simulations reveal that Chandra would fail to detect the majority (53.3%; 563/1056) of obscured (NH ≥ 1022 cm−2) simulated BASS AGN given the observed redshift and luminosity distribution of the CCLS. Even for detected sources with sufficient counts (≥30) for spectral modeling, the level of obscuration is significantly overestimated. This bias is most extreme for objects whose best fit indicates a high-column density AGN (NH ≥ 1024 cm−2), since the majority (66.7%; 18/27) of these are actually unobscured sources (NH < 1022 cm−2). This implies that previous studies may have significantly overestimated the increase in the obscured fraction with redshift and the fraction of luminous obscured AGN. Our findings highlight the importance of directly considering obscuration biases and forward modeling in X-ray surveys, as well as the need for higher-sensitivity X-ray missions such as the Advanced X-ray Imaging Satellite (AXIS), and the importance of multiwavelength indicators to estimate obscuration in distant supermassive black holes.

Original languageEnglish
Article number134
JournalAstrophysical Journal
Volume982
Issue number2
DOIs
StatePublished - 1 Apr 2025

Funding

FundersFunder number
China-Chile joint research fund
European Research Council
Horizon 2020 Framework Programme950533
Israel Science Foundation1849/19
Fondo Nacional de Desarrollo Científico y Tecnológico1241005, 1200495, 1230345
Agencia Nacional de Investigación y DesarrolloCATA-Basal FB210003, ICN12_009
YCAA80NSSC22K0793
Fondecyt Iniciacion11190831
National Aeronautics and Space Administration80NSSC19K0749, 80NSSC22K1126

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