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The Bright gamma-ray Flare of 3C 279 in 2015 June: AGILE Detection and Multifrequency Follow-up Observations




TekijätC. Pittori, F. Lucarelli, F. Verrecchia, C. M. Raiteri, M. Villata, V. Vittorini, M. Tavani, S. Puccetti, M. Perri, I. Donnarumma, S. Vercellone, J. A. Acosta-Pulido, R. Bachev, E. Benítez, G. A. Borman, M. I. Carnerero, D. Carosati, W. P. Chen, Sh. A. Ehgamberdiev, A. Goded, T. S. Grishina, D. Hiriart, H. Y. Hsiao, S. G. Jorstad, G. N. Kimeridze, E. N. Kopatskaya, O. M. Kurtanidze, S. O. Kurtanidze, V. M. Larionov, L. V. Larionova, A. P. Marscher, D. O. Mirzaqulov, D. A. Morozova, K. Nilsson, M. R. Samal, L. A. Sigua, B. Spassov, A. Strigachev, L. O. Takalo, L. A. Antonelli, A. Bulgarelli, P. Cattaneo, S. Colafrancesco, P. Giommi, F. Longo, A. Morselli, F. Paoletti

KustantajaIOP PUBLISHING LTD

Julkaisuvuosi2018

JournalAstrophysical Journal

Tietokannassa oleva lehden nimiASTROPHYSICAL JOURNAL

Lehden akronyymiASTROPHYS J

Artikkelin numero99

Vuosikerta856

Numero2

Sivujen määrä9

ISSN0004-637X

eISSN1538-4357

DOIhttps://doi.org/10.3847/1538-4357/aab1f9

Rinnakkaistallenteen osoitehttps://research.utu.fi/converis/portal/detail/Publication/31197982


Tiivistelmä
We report the AGILE detection and the results of the multifrequency follow-up observations of a bright.-ray flare of the blazar 3C 279 in 2015 June. We use AGILE and Fermi gamma-ray data, together with Swift X-ray andoptical-ultraviolet data, and ground-based GASP-WEBT optical observations, including polarization information, to study the source variability and the overall spectral energy distribution during the.-ray flare. The.-ray flaring data, compared with as yet unpublished simultaneous optical data that will allow constraints on the big blue bump disk luminosity, show very high Compton dominance values of similar to 100, with the ratio of.-ray to optical emission rising by a factor of three in a few hours. The multiwavelength behavior of the source during the flare challenges one-zone leptonic theoretical models. The new observations during the 2015 June flare are also compared with already published data and nonsimultaneous historical 3C 279 archival data.

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