The Spectral Energy Distribution of Fermi bright blazars
Abstract
(Abridged) We have conducted a detailed investigation of the broad-band spectral properties of the \gamma-ray selected blazars of the Fermi LAT Bright AGN Sample (LBAS). By combining our accurately estimated Fermi gamma-ray spectra with Swift, radio, infra-red, optical and other hard X-ray/gamma-ray data, collected within three months of the LBAS data taking period, we were able to assemble high-quality and quasi-simultaneous Spectral Energy Distributions (SED) for 48 LBAS blazars.The SED of these gamma-ray sources is similar to that of blazars discovered at other wavelengths, clearly showing, in the usual Log - Log F representation, the typical broad-band spectral signatures normally attributed to a combination of low-energy synchrotron radiation followed by inverse Compton emission of one or more components. We have used these SEDs to characterize the peak intensity of both the low and the high-energy components. The results have been used to derive empirical relationships that estimate the position of the two peaks from the broad-band colors (i.e. the radio to optical and optical to X-ray spectral slopes) and from the gamma-ray spectral index. Our data show that the synchrotron peak frequency is positioned between 10 and 10 Hz in broad-lined FSRQs and between and Hz in featureless BL Lacertae objects.We find that the gamma-ray spectral slope is strongly correlated with the synchrotron peak energy and with the X-ray spectral index, as expected at first order in synchrotron - inverse Compton scenarios. However, simple homogeneous, one-zone, Synchrotron Self Compton (SSC) models cannot explain most of our SEDs, especially in the case of FSRQs and low energy peaked (LBL) BL Lacs. (...)
Cite
@article{arxiv.0912.2040,
title = {The Spectral Energy Distribution of Fermi bright blazars},
author = {A. A. Abdo and M. Ackermann and M. Ajello and M. Axelsson and L. Baldini and J. Ballet and G. Barbiellini and D. Bastieri and B. M. Baughman and K. Bechtol and R. Bellazzini and B. Berenji and R. D. Blandford and E. D. Bloom and E. Bonamente and A. Borgland and J. Bregeon and A. Brez and M. Brigida and P. Bruel and T. H. Burnett and S. Buson and G. A. Caliandro and R. A. Cameron and P. A. Caraveo and J. M. Casandjian and E. Cavazzuti and C. Cecchi and O. Celik and E. Charles and S. Chaty and A. Chekhtman and J. Chiang and S. Ciprini and R. Claus and J. Cohen-Tanugi and S. Colafrancesco and L. R. Cominsky and J. Conrad and L. Costamante and S. Cutini and C. D. Dermer and A. de Angelis and F. de Palma and S. W. Digel and E. do Couto e Silva and P. S. Drell and R. Dubois and D. Dumora and C. Farnier and C. Favuzzi and S. J. Fegan and W. B. Focke and P. Fortin and M. Frailis and L. Fuhrmann and Y. Fukazawa and S. Funk and P. Fusco and F. Gargano and D. Gasparrini and N. Gehrels and S. Germani and B. Giebels and N. Giglietto and P. Giommi and F. Giordano and T. Glanzman and G. Godfrey and I. A. Grenier and J. E. Grove and L. Guillemot and S. Guiriec and D. Hadasch and Y. Hanabata and A. K. Harding and M. Hayashida and E. Hays and S. E. Healey and D. Horan and R. E. Hughes and R. Itoh and M. S. Jackson and G. Johannesson and A. S. Johnson and W. N. Johnson and M. Kadler and T. Kamae and H. Katagiri and J. Kataoka and N. Kawai and M. Kerr and J. Knodlseder and M. L. Kocian and M. Kuss and J. Lande and L. Latronico and F. Longo and F. Loparco and B. Lott and M. N. Lovellette and P. Lubrano and G. M. Madejski and A. Makeev and W. Max-Moerbeck and M. N. Mazziotta and W. McConville and J. E. McEnery and C. Meurer and P. F. Michelson},
journal= {arXiv preprint arXiv:0912.2040},
year = {2014}
}
Comments
85 pages, 38 figures, submitted to ApJ