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Spectroastrometry and Reverberation Mapping of Active Galactic Nuclei. II. Measuring Geometric Distances and Black Hole Masses of Four Nearby Quasars

Authors :
Li, Yan-Rong
Shangguan, Jinyi
Wang, Jian-Min
Davies, Ric
Santos, Daryl J.
Eisenhauer, Frank
Songsheng, Yu-Yang
Winkler, Hartmut
Aceituno, Jesús
Bai, Hua-Rui
Bai, Jin-Ming
Brotherton, Michael S.
Cao, Yixian
Chen, Yong-Jie
Du, Pu
Fang, Feng-Na
Feng, Jia-Qi
Feuchtgruber, Helmut
Schreiber, Natascha M. Förster
Fu, Yi-Xin
Genzel, Reinhard
Gillessen, Stefan
Ho, Luis C.
Hu, Chen
Liu, Jun-Rong
Lutz, Dieter
Ott, Thomas
Petrov, Romain G.
Rabien, Sebastian
Shimizu, Taro
Sturm, Eckhard
Tacconi, Linda J.
Wang, Yi-Lin
Yao, Zhu-Heng
Zhai, Shuo
Zhang, Hao
Zhao, Yi-Peng
Zhao, Yu
Publication Year :
2025

Abstract

The geometric distances of active galactic nuclei (AGNs) are challenging to measure because of their exceptionally compact structure yet vast cosmic distances. A combination of spectroastrometry and reverberation mapping (SARM) of broad-line regions (BLRs) constitutes a novel means to probe the geometric distance of AGNs, which has recently become practically feasible owing to successful interferometric observations with VLTI/GRAVITY. Here, we perform SARM analysis of four nearby quasars: Mrk 509, PDS 456, 3C 273, and NGC 3783. Results for the former two are reported for the first time and the latter two are revisited using our improved BLR dynamical modeling that includes the radial-dependent responsivity of BLRs. This allows us to self-consistently account for the emissivity weighting of the BLR in spectroastrometry and responsivity weighting in reverberation mapping. We obtain angular-diameter distances of the four quasars, from which we derive a Hubble constant of $H_0=69_{-10}^{+12}\,\rm km\,s^{-1}\,Mpc^{-1}$. Although this consititutes a large uncertainty for a measurement of $H_0$, it is anticipated that the precision will improve to a competitive level once a greater number of AGNs are accessible following the upgrade of GRAVITY in the near future. From SARM analysis, the black hole masses of the four quasars are also measured with the statistical uncertainty ranging from 0.06 to 0.23 dex, consistent with the correlations between black hole masses and properties of the host bulges.<br />Comment: 21 pages, 14 figures, 4 tables; submitted to ApJ; comments welcome

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2502.18856
Document Type :
Working Paper