A physical model for the broadband energy spectrum of X-ray illuminated accretion discs: fitting the spectral energy distribution of NGC 5548
arXiv:2110.01249 · doi:10.1051/0004-6361/202142358
Abstract
We develop a new physical model for the broadband spectral energy distribution (SED) of X-ray illuminated accretion discs, that takes into account the mutual interaction of the accretion disc and the X-ray corona, including all relativistic effects. We assume a Keplerian, optically thick and geometrically thin accretion disc and an X-ray source in the lamp-post geometry that emits an isotropic power-law spectrum with a high-energy cut-off. We assume that all the energy that would be released by thermal radiation in the standard disc model in its innermost part, is transported to the corona, effectively cooling the disc in this region. We include the disc heating due to thermalisation of the absorbed part of the disc illumination by X-ray corona. The X-ray reflection from the disc is also included. We compute the X-ray luminosity and the low-energy X-ray cut-off through an iterative process, taking full account of the interplay between the X-ray illumination of the disc and the resulting accretion disc spectrum which enters the corona so that the energy balance is preserved. The corona radius is also computed from the conservation of the photon's number during Comptonization. We discuss the model SEDs and their dependence on system parameters. The disc-corona interaction has profound effects - it constrains the X-ray luminosity and changes the shape and normalisation of the UV/optical blue bump. We use the new code to fit the broad-band SED of a typical Seyfert 1 galaxy, NGC 5548. We infer a high black-hole spin, an intermediate system inclination, and an accretion rate below 10% of Eddington. The X-ray luminosity in this source could be supported by 45-70% of the accretion energy dissipated in the disc. The new model, named KYNSED, is publicly available to be used for fitting AGN SEDs inside the XSPEC spectral analysis tool.
20 pages, 14 figures, accepted by Astronomy & Astrophysics
References in corpus (17)
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- The AGN Black Hole Mass Database
- Space Telescope and Optical Reverberation Mapping Project. II. Swift and HST Reverberation Mapping of the Accretion Disk of NGC 5548
- On why the Iron K-shell absorption in AGN is not a signature of the local Warm/Hot Intergalactic Medium
- Space Telescope and Optical Reverberation Mapping Project. I. Ultraviolet Observations of the Seyfert 1 Galaxy NGC 5548 with the Cosmic Origins Spectrograph on Hubble Space Telescope
- Swift monitoring of NGC 5548: X-ray reprocessing and short term UV/optical variability
- Intensive disc-reverberation mapping of Fairall 9: 1st year of Swift & LCO monitoring
- Supermassive black holes with high accretion rates in active galactic nuclei. XI. Accretion disk reverberation mapping of Mrk 142
- Modeling the UV/optical continuum time-lags in AGN
- UV/optical disk thermal reverberation in AGN: an in-depth study with an analytic prescription for the time-lag spectra
- Constraining the size of the corona with fully relativistic calculations of spectra of extended corona. I - the Monte Carlo radiative transfer code
- On the multi-wavelength variability of Mrk 110: Two components acting at different timescales
- Anatomy of the AGN in NGC 5548: III. The high-energy view with NuSTAR and INTEGRAL
- Evidence for variability timescale dependent UV/X-ray delay in Seyfert 1 AGN NGC 7469
- A hard look at thermal reverberation and optical/UV lags in NGC 5548
- Multiwavelength power-spectrum analysis of NGC 5548
- AGN STORM 2: I. First results: A Change in the Weather of Mrk 817
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- Modelling Continuum Reverberation in AGN: A Spectral-Timing Analysis of the UV Variability Through X-ray Reverberation in Fairall 9
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- The UV/optical Continuum Reverberation Mapping of Eight Active Galactic Nuclei with Swift: Further Evidence for the Outer Component
- Investigating the consistency of the shape and flux of X-ray reflection spectra in the hard state with an accretion disk reaching close to the black hole
- The X-ray/UV Connection in NGC 5548: A Rapidly Varying Corona
- Interaction between disk and extended corona in a general relativistic framework
- Dissecting the multiple-component outflow in NGC 5548 with absorption-line Variability