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Soft X-ray spectroscopy of Compton-thick Seyfert 2 galaxies with BeppoSAX
Authors:M Guainazzi  G Matt  L A Antonelli  L Bassani  A C Fabian  R Maiolino  A Marconi  F Fiore  K Iwasawa  L Piro
Institution:Astrophysics Division, Space Science Department of ESA, ESTEC, Postbus 299, NL-2200 AG Noordwijk, the Netherlands; Dipartimento di Fisica 'E.Amaldi', Universitádegli Studi 'Roma Tre', Via della Vasca Navale 84, I-00146 Roma, Italy; Osservatorio Astronomico di Roma, Via dell'Osservatorio, I-00144 Monteporzio Catone, Italy; Istituto Tecnologie e Studio delle Radiazioni Extraterrestri, C.N.R., Via Gobetti 101, I-40129 Bologna, Italy; Institute of Astronomy, University of Cambridge, Madingley Road, Cambridge CB3 0HA; Osservatorio Astrofisico di Arcetri, Largo E. Fermi 5, I-50125 Firenze, Italy; BeppoSAX Science Data Center, Via Corcolle 19, I-00131 Roma, Italy; Istituto di Astrofisica Spaziale, CNR, Via Fosso del Cavaliere, I-00133 Roma, Italy
Abstract:We present an X-ray spectroscopic study of the bright Compton-thick Seyfert 2 galaxies NGC 1068 and the Circinus Galaxy, performed with BeppoSAX . Matt et al. interpreted the spectrum above 4 keV as the superposition of Compton reflection and warm plasma scattering of the nuclear radiation. When this continuum is extrapolated downwards to 0.1 keV, further components arise. The NGC 1068 spectrum is rich in emission lines, mainly owing to K α transitions of He-like elements from oxygen to iron, plus a K α fluorescent line from neutral iron. If the ionized lines originate in the warm scatterer, its thermal and ionization structure must be complex. From the continuum and line properties, we estimate a column density, N warm, of the warm scatterer less than a few×1021 cm−2. In the Circinus Galaxy, the absence of highly ionized iron is consistent with a scattering medium with U X≲5 and N warm∼ a few×1022 cm−2. In both cases the neutral iron line is most naturally explained as fluorescence in the medium responsible for the Compton reflection continuum. In NGC 1068 an optically thin plasma emission with kT ≃500 eV and strongly sub-solar metallicity is required, while such a component is only marginal in the Circinus Galaxy. We tentatively identify this component as emission of diffuse hot gas in the nuclear starbursts. Possible causes for the metal depletion are discussed.
Keywords:line: formation  galaxies: active  galaxies: individual: NGC 1068  galaxies: individual: Circinus Galaxy  galaxies: Seyfert  X-rays: galaxies
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