Spitzer Space Telescope Measurements of Dust Reverberation Lags in the Seyfert 1 Galaxy NGC 6418
Billy Vazquez, Pasquale Galianni, Michael Richmond, Andrew Robinson,, David J. Axon, Keith Horne, Triana Almeyda, Michael Fausnaugh, Bradley M., Peterson, Mark Bottorff, Jack Gallimore, Moshe Eltizur, Hagai Netzer, Thaisa, Storchi-Bergmann, Alessandro Marconi, Alessandro Capetti

TL;DR
This study uses Spitzer and optical monitoring over fifteen months to measure dust reverberation lags in NGC 6418, revealing the size and structure of its dusty torus and providing insights into dust grain composition and torus models.
Contribution
First detailed mid-infrared reverberation lag measurements in NGC 6418, constraining dust location and grain properties in the AGN torus.
Findings
Dust at 3.6 and 4.5 μm lags optical by ~37 and 47 days.
Dust emitting at these wavelengths is about 1 light-month from the AGN.
Reverberation radii are consistent with graphite grain sublimation limits.
Abstract
We present results from a fifteen-month campaign of high-cadence (~ 3 days) mid-infrared Spitzer and optical (B and V ) monitoring of the Seyfert 1 galaxy NGC 6418, with the objective of determining the characteristic size of the dusty torus in this active galactic nucleus (AGN). We find that the 3.6 m and 4.5 m flux variations lag behind those of the optical continuum by days and days, respectively. We report a cross-correlation time lag between the 4.5 m and 3.6 m flux of days. The lags indicate that the dust emitting at 3.6 m and 4.5 m is located at a distance of approximately 1 light-month (~ 0.03 pc) from the source of the AGN UV-optical continuum. The reverberation radii are consistent with the inferred lower limit to the sublimation radius for pure graphite grains at 1800 K, but smaller…
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