Astronomy and Astrophysics – Astronomy
Scientific paper
Feb 1984
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1984a%26a...131...87c&link_type=abstract
Astronomy and Astrophysics (ISSN 0004-6361), vol. 131, no. 1, Feb. 1984, p. 87-102.
Astronomy and Astrophysics
Astronomy
34
Astronomical Spectroscopy, Interstellar Gas, Seyfert Galaxies, Ultraviolet Astronomy, Ultraviolet Spectra, Continuous Spectra, Emission Spectra, Interstellar Extinction, Photoionization, Spectral Energy Distribution
Scientific paper
The 5 Seyfert I galaxies MK 304, NGC 7603, MCG 8-11-11, ESO 12-G 21, and NGC 1566 have been observed with IUE (1200 - 3200 Å). Their UV spectrum is rich in emission lines. A steep rise of the continuum toward shorter wavelengths is observed below ≡2000 Å in 4 of these objects; this excess is interpreted as thermal emission from an accretion disk. For a sample of 23 Seyfert galaxies, a significant inverse correlation is found between the strength of the Fe II optical lines - relative to that of Hβ - vs. the C IV 1550/C III] 1908 intensity ratio. The intensities of the emission lines correlate with that of the continuum, supporting thus photoionization models of the broad line region (BLR). The authors postulate that most of the missing emission arises through collisional excitation in a high density/opacity zone of the BLR. Collisional model calculations are carried out that include the hydrogen, Fe II, Mg II, C II 1335, and C II] 2325 lines.
Clavel Jean
Joly Monique
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