English

AGN STORM 2. VI. Mapping Temperature Fluctuations in the Accretion Disk of Mrk 817

High Energy Astrophysical Phenomena 2023-10-04 v1 Astrophysics of Galaxies

Abstract

We fit the UV/optical lightcurves of the Seyfert 1 galaxy Mrk 817 to produce maps of the accretion disk temperature fluctuations δT\delta T resolved in time and radius. The δT\delta T maps are dominated by coherent radial structures that move slowly (vcv \ll c) inwards and outwards, which conflicts with the idea that disk variability is driven only by reverberation. Instead, these slow-moving temperature fluctuations are likely due to variability intrinsic to the disk. We test how modifying the input lightcurves by smoothing and subtracting them changes the resulting δT\delta T maps and find that most of the temperature fluctuations exist over relatively long timescales (\sim100s of days). We show how detrending AGN lightcurves can be used to separate the flux variations driven by the slow-moving temperature fluctuations from those driven by reverberation. We also simulate contamination of the continuum emission from the disk by continuum emission from the broad line region (BLR), which is expected to have spectral features localized in wavelength, such as the Balmer break contaminating the UU band. We find that a disk with a smooth temperature profile cannot produce a signal localized in wavelength and that any BLR contamination should appear as residuals in our model lightcurves. Given the observed residuals, we estimate that only \sim20% of the variable flux in the UU and uu lightcurves can be due to BLR contamination. Finally, we discus how these maps not only describe the data, but can make predictions about other aspects of AGN variability.

Keywords

Cite

@article{arxiv.2310.01497,
  title  = {AGN STORM 2. VI. Mapping Temperature Fluctuations in the Accretion Disk of Mrk 817},
  author = {Jack M. M. Neustadt and Christopher S. Kochanek and John Montano and Jonathan Gelbord and Aaron J. Barth and Gisella De Rosa and Gerard A. Kriss and Edward M. Cackett and Keith Horne and Erin A. Kara and Hermine Landt and Hagai Netzer and Nahum Arav and Misty C. Bentz and Elena Dalla Bonta and Maryam Dehghanian and Pu Du and Rick Edelson and Gary J. Ferland and Carina Fian and Travis Fischer and Michael R. Goad and Diego H. Gonzalez Buitrago and Varoujan Gorjian and Catherine J. Grier and Patrick B. Hall and Y. Homayouni and Chen Hu and Dragana Ilic and Michael D. Joner and Jelle Kaastra and Shai Kaspi and Kirk T. Korista and Andjelka B. Kovacevic and Collin Lewin and Yan-Rong Li and Ian M. McHardy and Missagh Mehdipour and Jake A. Miller and Christos Panagiotou and Ethan Partington and Rachel Plesha and Richard W. Pogge and Luka C. Popovic and Daniel Proga and Thaisa Storchi-Bergmann and David Sanmartim and Matthew R. Siebert and Matilde Signorini and Marianne Vestergaard and Fatima Zaidouni and Ying Zu},
  journal= {arXiv preprint arXiv:2310.01497},
  year   = {2023}
}

Comments

23 pages, 18 figures, submitting to ApJ, comments welcome