Emission-line Variability during a Nonthermal Outburst in the Gamma-Ray Bright Quasar 1156+295

Author:

Hallum Melissa K.ORCID,Jorstad Svetlana G.ORCID,Larionov Valeri M.ORCID,Marscher Alan P.ORCID,Joshi ManasvitaORCID,Weaver Zachary R.ORCID,Williamson Karen E.ORCID,Agudo IvánORCID,Borman George A.,Casadio CarolinaORCID,Fuentes AntonioORCID,Grishina Tatiana S.,Kopatskaya Evgenia N.ORCID,Larionova Elena G.ORCID,Larionova Liyudmila V.,Morozova Daria A.ORCID,Nikiforova Anna A.ORCID,Savchenko Sergey S.ORCID,Troitsky Ivan S.ORCID,Troitskaya Yulia V.ORCID,Vasilyev Andrey A.ORCID

Abstract

Abstract We present multi-epoch optical spectra of the γ-ray bright blazar 1156+295 (4C +29.45, Ton 599) obtained with the 4.3 m Lowell Discovery Telescope. During a multiwavelength outburst in late 2017, when the γ-ray flux increased to 2.5 × 10−6 phot cm−2 s−1 and the quasar was first detected at energies ≥100 GeV, the flux of the Mg ii λ2798 emission line changed, as did that of the Fe emission complex at shorter wavelengths. These emission-line fluxes increased along with the highly polarized optical continuum flux, which is presumably synchrotron radiation from the relativistic jet, with a relative time delay of ≲2 weeks. This implies that the line-emitting clouds lie near the jet, which points almost directly toward the line of sight. The emission-line radiation from such clouds, which are located outside the canonical accretion-disk related broad-line region, may be a primary source of seed photons that are up-scattered to γ-ray energies by relativistic electrons in the jet.

Funder

EC ∣ European Research Council

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Catching profound optical flares in blazars;Monthly Notices of the Royal Astronomical Society;2023-01-28

2. Shortterm optical variability of 4C 29.45;Turkish Journal of Physics;2023-01-01

3. Kinematics of Parsec-scale Jets of Gamma-Ray Blazars at 43 GHz during 10 yr of the VLBA-BU-BLAZAR Program;The Astrophysical Journal Supplement Series;2022-05-01

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