A1 Refereed original research article in a scientific journal

Line shapes in narrow-line seyfert 1 galaxies: A tracer of physical properties?




AuthorsM. Berton, I. Björklund, A. Lähteenmäki, E. Congiu, E. Järvelä, G. Terreran, G. La Mura

EditorsAugustın Skopal, Richard Komzık, Drahomir Chochol, Julius Koza, Ales Kucera, Lubos Neslusan, Vladimir Porubcan, Theodor Pribulla

Conference nameSerbian Conference on Spectral Line Shapes in Astrophysics

PublisherAstronomical Institute, Slovak Academy of Sciences

Publication year2020

Journal: Contributions of the Astronomical Observatory on Skalnaté Pleso

Book title Spectral Line Shapes in Astrophysics

Journal name in sourceContributions of the Astronomical Observatory Skalnate Pleso

Volume50

Issue1

First page 270

Last page292

Number of pages23

ISSN1335-1842

eISSN1336–0337

DOIhttps://doi.org/10.31577/caosp.2020.50.1.270

Web address http://www.astro.sk/caosp/Eedition/FullTexts/vol50no1/pp270-292.pdf


Abstract

Line profiles can provide fundamental information on the physics of active galactic nuclei (AGN). In the case of narrow-line Seyfert 1 galaxies (NLS1s) this is of particular importance since past studies revealed how their permitted line profiles are well reproduced by a Lorentzian function instead of a Gaussian. This has been explained with different properties of the broadline region (BLR), which may present a more pronounced turbulent motions in NLS1s with respect to other AGN. We investigated the line profiles in a recent large NLS1 sample classified using SDSS, and we divided the sources into two subsamples according to their line shapes, Gaussian or Lorentzian. The line profiles clearly separate all the properties of NLS1s. Black hole mass, Eddington ratio, [O III], and Fe II strength are all very different in the Lorentzian and Gaussian samples. We interpret this in terms of evolution within the class of NLS1s. The Lorentzian sources may be the youngest objects, while Gaussian profiles may be typically associated to more evolved objects. Further detailed spectroscopic studies are needed to fully confirm our hypothesis.
Key words: Galaxies: active – quasars: emission lines – Line: profiles – Galaxies: evolution



Last updated on 26/11/2024 04:18:22 PM