Reverberation Mapping of the Kepler-Field AGN KA1858+4850
Liuyi Pei, Aaron J. Barth, Greg S. Aldering, Michael M. Briley, Carla, J. Carroll, Daniel J. Carson, S. Bradley Cenko, Kelsey I. Clubb, Daniel P., Cohen, Antonino Cucchiara, Tyler D. Desjardins, Rick Edelson, Jerome J. Fang,, Joseph M. Fedrow, Alexei V. Filippenko, Ori D. Fox

TL;DR
This study used reverberation mapping with Kepler data to measure the black hole mass in the galaxy KA1858+4850, providing high-precision results that serve as a reference for AGN variability studies.
Contribution
First reverberation mapping campaign of KA1858+4850 using Kepler data, yielding precise black hole mass and lag measurements for this active galaxy.
Findings
Black hole mass estimated at ~8 million solar masses.
H-beta emission line lag measured around 13 days.
Kepler data provided unprecedented light curve quality.
Abstract
KA1858+4850 is a narrow-line Seyfert 1 galaxy at redshift 0.078 and is among the brightest active galaxies monitored by the Kepler mission. We have carried out a reverberation mapping campaign designed to measure the broad-line region size and estimate the mass of the black hole in this galaxy. We obtained 74 epochs of spectroscopic data using the Kast Spectrograph at the Lick 3-m telescope from February to November of 2012, and obtained complementary V-band images from five other ground-based telescopes. We measured the H-beta light curve lag with respect to the V-band continuum light curve using both cross-correlation techniques (CCF) and continuum light curve variability modeling with the JAVELIN method, and found rest-frame lags of lag_CCF = 13.53 (+2.03, -2.32) days and lag_JAVELIN = 13.15 (+1.08, -1.00) days. The H-beta root-mean-square line profile has a width of sigma_line = 770…
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