The Deviation of the Broad-line Region Size Between Reverberation Mapping and Spectroastrometry
arXiv:2104.11417 · doi:10.3847/1538-4357/abfb6b
Abstract
The combination of the linear size from reverberation mapping (RM) and the angular distance of the broad line region (BLR) from spectroastrometry (SA) in active galactic nuclei (AGNs) can be used to measure the Hubble constant . Recently, Wang et al. (2020) successfully employed this approach and estimated from 3C 273. However, there may be a systematic deviation between the response-weighted radius (RM measurement) and luminosity-weighted radius (SA measurement), especially when different broad lines are adopted for size indicators (e.g., \hb\ for RM and \pa\ for SA). Here we evaluate the size deviations measured by six pairs of hydrogen lines (e.g., \hb, \ha\ and \pa) via the locally optimally emitting cloud (LOC) models of BLR. We find that the radius ratios (=/) of the same line deviated systematically from 1 (0.85-0.88) with dispersions between 0.063-0.083. Surprisingly, the values from the \pa(SA)/\hb(RM) and \ha(SA)/\hb(RM) pairs not only are closest to 1 but also have considerably smaller uncertainty. Considering the current infrared interferometry technology, the \pa(SA)/\hb(RM) pair is the ideal choice for the low redshift objects in the SARM project. In the future, the \ha(SA)/\hb(RM) pair could be used for the high redshift luminous quasars. These theoretical estimations of the SA/RM radius pave the way for the future SARM measurements to further constrain the standard cosmological model.
8 pages, 6 figures, Accepted for Publication in The Astrophysical Journal
References in corpus (7)
- Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM
- Testing thermal reprocessing in AGN accretion discs
- Reverberation Measurements of the Inner Radius of the Dust Torus in 17 Seyfert Galaxies
- The innermost region of AGN tori: implications from the HST/NICMOS Type 1 point sources and near-IR reverberation
- Interpreting broad emission-line variations I : Factors influencing the emission-line response
- Cosmology with AGN dust time lags -- Simulating the new VEILS survey
- Geometric Distances of Quasars Measured by Spectroastrometry and Reverberation Mapping:Monte Carlo Simulations
Cited by in corpus (4)
- The picture of BLR in 2.5-D FRADO: Dynamics & Geometry
- Spectroastrometry and Reverberation Mapping: the Mass and Geometric Distance of the Supermassive Black Hole in the Quasar 3C 273
- Spectroastrometry and Reverberation Mapping of Active Galactic Nuclei. II. Measuring Geometric Distances and Black Hole Masses of Four Nearby Quasars
- Rarefied Broad-Line Regions in Active Galactic Nuclei: Anomalous Responses in Reverberation Mapping and Implications for Weak Emission-Line Quasars