Intensive X-ray/UVOIR continuum reverberation mapping of the Seyfert AGN MCG+08-11-11
D. Kynoch, I. M. McHardy, E. M. Cackett, J. Gelbord, J. V. Hern\'andez Santisteban, K. Horne, J. A. Miller, H. Netzer, C. Done, R. Edelson, M. M. Fausnaugh, M. R. Goad, B. M. Peterson, F. M. Vincentelli

TL;DR
This study conducts intensive multi-wavelength reverberation mapping of the Seyfert galaxy MCG+08-11-11, revealing the dominant role of the broad line region in reprocessing and luminosity-dependent lag behavior.
Contribution
It provides the highest X-ray to UV correlation in a Seyfert galaxy and demonstrates the importance of the broad line region in reverberation signals, challenging simple disc reprocessing models.
Findings
X-ray to UV correlation r_max = 0.85
Lag spectrum indicates BLR dominance
Luminosity affects lag measurements
Abstract
We present results from intensive (x3 daily), three-month-long X-ray, UV and optical monitoring of the bright Seyfert active galactic nucleus (AGN) MCG+08-11-11 with Swift, supported by optical-infrared ground-based monitoring. The 12 resultant, well-sampled, lightcurves are highly correlated; in particular, the X-ray to UV correlation r_max = 0.85 is, as far as we know, the highest yet recorded in a Seyfert galaxy. The lags increase with wavelength, as expected from reprocessing of central high-energy emission by surrounding material. Our lag spectrum is much shallower than that obtained from an optical monitoring campaign conducted a year earlier when MCG+08-11-11 was approximately 4 times brighter. After filtering out long-term trends in the earlier optical lightcurves we recover shorter lags consistent with our own - demonstrating concurrent reverberation signals from different…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Galaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
