Diverse Origins of Broad H$α$ Lines in Heavily Obscured AGNs Revealed by Multi-epoch Spectroscopy

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Main Authors: Mizukoshi, Shoichiro, Minezaki, Takeo, Ubukata, Subaru, Matsubayashi, Kazuya, Sameshima, Hiroaki, Kokubo, Mitsuru, Horiuchi, Takashi, Noda, Hirofumi, Yamada, Satoshi, Vijarnwannaluk, Bovornpratch, Chen, Chian-Chou
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Published: 2026
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author Mizukoshi, Shoichiro
Minezaki, Takeo
Ubukata, Subaru
Matsubayashi, Kazuya
Sameshima, Hiroaki
Kokubo, Mitsuru
Horiuchi, Takashi
Noda, Hirofumi
Yamada, Satoshi
Vijarnwannaluk, Bovornpratch
Chen, Chian-Chou
author_facet Mizukoshi, Shoichiro
Minezaki, Takeo
Ubukata, Subaru
Matsubayashi, Kazuya
Sameshima, Hiroaki
Kokubo, Mitsuru
Horiuchi, Takashi
Noda, Hirofumi
Yamada, Satoshi
Vijarnwannaluk, Bovornpratch
Chen, Chian-Chou
contents According to the classical AGN model, broad emission lines originate from the broad-line region (BLR) and are observable only when the attenuation by the dusty torus is small. However, we recently found several heavily-obscured ($A_V > 50$ mag) AGNs with broad H$α$ detections: MCG -3-34-64, UGC 5101, and Mrk 268. To investigate the origin of the observed broad line in these AGNs, we performed multi-epoch optical spectroscopic observations to search for flux variability of the broad H$α$ line. For MCG -3-34-64 and UGC 5101, no significant variability was detected, suggesting that the broad line of these AGNs may arise from sources other than the BLR. Spectral fitting analysis suggests possible large contribution of ionized outflows to the observed broad component of MCG -3-34-64, while both the outflow and scattering by polar material can explain that of UGC 5101. For Mrk 268, we detected a significant ($4.3σ$) flux variation of the broad H$α$ line by using the flux ratio of the H$α$ complex and the [SII]$λ\lambda6716$, 6731 doublet, indicating that the broad line originates directly from the BLR. The lack of significant flux variation in the optical continuum implies that the line of sight to the nucleus of Mrk 268 is mildly obscured. Our results demonstrate that the observed broad H$α$ lines in obscured AGNs likely have multiple origins. Such complexity may introduce additional uncertainties in black hole mass measurements of distant AGNs revealed by e.g., JWST.
format Preprint
id arxiv_https___arxiv_org_abs_2601_08212
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Diverse Origins of Broad H$α$ Lines in Heavily Obscured AGNs Revealed by Multi-epoch Spectroscopy
Mizukoshi, Shoichiro
Minezaki, Takeo
Ubukata, Subaru
Matsubayashi, Kazuya
Sameshima, Hiroaki
Kokubo, Mitsuru
Horiuchi, Takashi
Noda, Hirofumi
Yamada, Satoshi
Vijarnwannaluk, Bovornpratch
Chen, Chian-Chou
Astrophysics of Galaxies
According to the classical AGN model, broad emission lines originate from the broad-line region (BLR) and are observable only when the attenuation by the dusty torus is small. However, we recently found several heavily-obscured ($A_V > 50$ mag) AGNs with broad H$α$ detections: MCG -3-34-64, UGC 5101, and Mrk 268. To investigate the origin of the observed broad line in these AGNs, we performed multi-epoch optical spectroscopic observations to search for flux variability of the broad H$α$ line. For MCG -3-34-64 and UGC 5101, no significant variability was detected, suggesting that the broad line of these AGNs may arise from sources other than the BLR. Spectral fitting analysis suggests possible large contribution of ionized outflows to the observed broad component of MCG -3-34-64, while both the outflow and scattering by polar material can explain that of UGC 5101. For Mrk 268, we detected a significant ($4.3σ$) flux variation of the broad H$α$ line by using the flux ratio of the H$α$ complex and the [SII]$λ\lambda6716$, 6731 doublet, indicating that the broad line originates directly from the BLR. The lack of significant flux variation in the optical continuum implies that the line of sight to the nucleus of Mrk 268 is mildly obscured. Our results demonstrate that the observed broad H$α$ lines in obscured AGNs likely have multiple origins. Such complexity may introduce additional uncertainties in black hole mass measurements of distant AGNs revealed by e.g., JWST.
title Diverse Origins of Broad H$α$ Lines in Heavily Obscured AGNs Revealed by Multi-epoch Spectroscopy
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2601.08212