Multi-wavelength campaign on NGC 7469: III. Spectral energy distribution and the AGN wind photoionisation modelling, plus detection of diffuse X-rays from the starburst with Chandra HETGS
M. Mehdipour, J.S. Kaastra, E. Costantini, E. Behar, G.A. Kriss, S., Bianchi, G. Branduardi-Raymont, M. Cappi, J. Ebrero, L. Di Gesu, S. Kaspi, J., Mao, B. De Marco, R. Middei, U. Peretz, P.-O. Petrucci, G. Ponti, F. Ursini

TL;DR
This study uses high-resolution X-ray spectroscopy and multi-epoch data to analyze the structure and ionization of the AGN wind in NGC 7469, revealing a thermally-driven wind and diffuse X-ray emission from the starburst ring.
Contribution
It provides the first detailed photoionisation model of the AGN wind in NGC 7469 across two epochs, highlighting the wind's thermal stability and spatially extended diffuse X-ray emission.
Findings
The AGN wind has four ionisation components with velocities from -400 to -1800 km/s.
Change in the SED shape causes some variation in wind ionisation, but overall column densities remain stable.
Diffuse soft X-ray emission is spatially extended and linked to the starburst ring.
Abstract
We investigate the physical structure of the AGN wind in the Seyfert-1 galaxy NGC 7469 through high-resolution X-ray spectroscopy with Chandra HETGS and photoionisation modelling. Contemporaneous data from Chandra, HST, and Swift are used to model the optical-UV-X-ray continuum and determine the spectral energy distribution (SED) at two epochs, 13 years apart. For our investigation we use new observations taken in December 2015-January 2016, and historical ones taken in December 2002. We study the impact of a change in the SED shape, seen between the two epochs, on the photoionisation of the wind. The HETGS spectroscopy shows that the AGN wind in NGC 7469 consists of four ionisation components, with their outflow velocities ranging from -400 to -1800 km/s. From our modelling we find that the change in the ionising continuum shape between the two epochs results in some variation in the…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysical Phenomena and Observations · Gamma-ray bursts and supernovae
