The SDSS-V Black Hole Mapper Reverberation Mapping Project: Unusual Broad-Line Variability in a Luminous Quasar
Logan B. Fries, Jonathan R. Trump, Megan C. Davis, C. J. Grier, Yue, Shen, Scott F. Anderson, Tom Dwelly, Michael Eracleous, Y. Homayouni, Keith, Horne, Mirko Krumpe, Sean Morrison, Jessie C. Runnoe, Benny Trakhtenbrot,, Roberto J. Assef, W. N. Brandt, Joel Brownstein

TL;DR
This study analyzes high-cadence spectroscopic data of a luminous quasar over nine years, revealing complex broad-line variability driven by gas kinematics, which impacts black hole binary searches.
Contribution
It provides detailed observations of broad-line variability and proposes a model involving gas inflow and asymmetry, advancing understanding of quasar broad-line region dynamics.
Findings
Anti-correlated line widths and flux indicate line breathing.
Detected radial velocity shifts up to 800 km/s.
Complex gas kinematics likely cause observed variability.
Abstract
We present a high-cadence multi-epoch analysis of dramatic variability of three broad emission lines (MgII, H, and H) in the spectra of the luminous quasar ((5100\r{A}) = erg s) SDSS J141041.25+531849.0 at with 127 spectroscopic epochs over 9 years of monitoring (2013-2022). We observe anti-correlations between the broad emission-line widths and flux in all three emission lines, indicating that all three broad emission lines "breathe" in response to stochastic continuum variations. We also observe dramatic radial velocity shifts in all three broad emission lines, ranging from 400 km s to 800 km s, that vary over the course of the monitoring period. Our preferred explanation for the broad-line variability is complex kinematics in the broad-line region gas. We suggest a model…
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Taxonomy
TopicsRadio Astronomy Observations and Technology · Astrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena
