Piercing through Highly Obscured and Compton-thick AGNs in the Chandra Deep Fields. II. Are Highly Obscured AGNs the Missing Link in the Merger-Triggered AGN-Galaxy Coevolution Models?
Junyao Li, Yongquan Xue, Mouyuan Sun, William N. Brandt, Guang Yang,, Fabio Vito, Paolo Tozzi, Cristian Vignali, Andrea Comastri, Xinwen Shu,, Guanwen Fang, Lulu Fan, Bin Luo, Chien-Ting Chen, Xuechen Zheng

TL;DR
This study analyzes a large sample of highly obscured AGNs from Chandra surveys to understand their properties, host galaxies, and triggering mechanisms, finding that secular processes likely dominate their activation over mergers.
Contribution
It provides a comprehensive multi-wavelength analysis of highly obscured AGNs, revealing their host galaxy characteristics and suggesting secular processes as the primary trigger for their activity.
Findings
Most obscured AGNs are not identified by common IR color criteria.
Obscured AGN activity correlates with host galaxy stellar mass.
Secular processes likely trigger the accretion in these AGNs.
Abstract
By using a large highly obscured () AGN sample (294 sources at ) selected from detailed X-ray spectral analyses in the deepest Chandra surveys, we explore distributions of these X-ray sources in various optical/IR/X-ray color-color diagrams and their host-galaxy properties, aiming at characterizing the nuclear obscuration environment and the triggering mechanism of highly obscured AGNs. We find that the refined IRAC color-color diagram fails to identify the majority of X-ray selected highly obscured AGNs, even for the most luminous sources with . Over 80% of our sources will not be selected as heavily obscured candidates using the flux ratio of and criteria, implying complex origins and conditions for the obscuring materials that are responsible…
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