Reverberation Mapping of Two Luminous Quasars: the Broad-line Region Structure and Black Hole Mass
Sha-Sha Li, Sen Yang, Zi-Xu Yang, Yong-Jie Chen, Yu-Yang Songsheng,, He-Zhen Liu, Pu Du, Bin Luo, Zhe Yu, Chen Hu, Bo-Wei Jiang, Dong-Wei Bao,, Wei-Jian Guo, Zhi-Xiang Zhang, Yan-Rong Li, Ming Xiao, Kai-Xing Lu, Luis C., Ho, Jing-Min Bai, Wei-Hao Bian, Jes\'us Aceituno

TL;DR
This study uses reverberation mapping to analyze the broad-line region structure and black hole masses of two luminous quasars, revealing complex dynamics and Eddington ratio effects on BLR size.
Contribution
First long-term reverberation mapping of PG 0923+201, providing new insights into BLR structure and black hole mass in high-luminosity quasars.
Findings
Detected time lags of broad emission lines relative to continuum.
Velocity-resolved delay maps show complex BLR dynamics.
Black hole masses estimated with implications for high-luminosity AGN measurements.
Abstract
We report the results of a multi-year spectroscopic and photometric monitoring campaign of two luminous quasars, PG~0923+201 and PG~1001+291, both located at the high-luminosity end of the broad-line region (BLR) size-luminosity relation with optical luminosities above . PG~0923+201 is for the first time monitored, and PG~1001+291 was previously monitored but our campaign has a much longer temporal baseline. We detect time lags of variations of the broad H, H, Fe {\sc ii} lines with respect to those of the 5100~{\AA} continuum. The velocity-resolved delay map of H in PG~0923+201 indicates a complicated structure with a mix of Keplerian disk-like motion and outflow, and the map of H in PG~1001+291 shows a signature of Keplerian disk-like motion. Assuming a virial factor of and FWHM line widths, we measure the black…
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