Radio to gamma-ray variability study of blazar S5 0716+714
| dc.contributor.author | Rani, B. | |
| dc.contributor.author | Böttcher, M. | |
| dc.contributor.author | Krichbaum, T.P. | |
| dc.contributor.author | Fuhrmann, L. | |
| dc.contributor.author | Lott, B. | |
| dc.contributor.researchID | 24420530 - Böttcher, Markus | |
| dc.date.accessioned | 2015-03-23T12:32:56Z | |
| dc.date.available | 2015-03-23T12:32:56Z | |
| dc.date.issued | 2013 | |
| dc.description.abstract | We present the results of a series of radio, optical, X-ray, and γ-ray observations of the BL Lac object S50716+714 carried out between April 2007 and January 2011. The multifrequency observations were obtained using several ground- and space-based facilities. The intense optical monitoring of the source reveals faster repetitive variations superimposed on a long-term variability trend on a time scale of ∼350 days. Episodes of fast variability recur on time scales of ∼60−70 days. The intense and simultaneous activity at optical and γ-ray frequencies favors the synchrotron self-Compton mechanism for the production of the high-energy emission. Two major low-peaking radio flares were observed during this high optical/γ-ray activity period. The radio flares are characterized by a rising and a decaying stage and agrees with the formation of a shock and its evolution. We found that the evolution of the radio flares requires a geometrical variation in addition to intrinsic variations of the source. Different estimates yield robust and self-consistent lower limits of δ ≥ 20 and equipartition magnetic field Beq ≥ 0.36 G. Causality arguments constrain the size of emission region θ ≤ 0.004 mas. We found a significant correlation between flux variations at radio frequencies with those at optical and γ-rays. The optical/GeV flux variations lead the radio variability by ∼65 days. The longer time delays between low-peaking radio outbursts and optical flares imply that optical flares are the precursors of radio ones. An orphan X-ray flare challenges the simple, one-zone emission models, rendering them too simple. Here we also describe the spectral energy distribution modeling of the source from simultaneous data taken through different activity periods. | en_US |
| dc.identifier.citation | Rani, B. et al. 2013. Radio to gamma-ray variability study of blazar S5 0716+714. Astronomy & astrophysics, 552: Article no A11. [https://doi.org/10.1051/0004-6361/201321058] | en_US |
| dc.identifier.issn | 0004-6361 | |
| dc.identifier.issn | 1432-0746 (Online) | |
| dc.identifier.uri | http://hdl.handle.net/10394/13608 | |
| dc.identifier.uri | https://doi.org/10.1051/0004-6361/201321058 | |
| dc.language.iso | en | en_US |
| dc.publisher | EDP Sciences | en_US |
| dc.subject | Galaxies: active | en_US |
| dc.subject | BL Lacertae objects: individual: S5 0716+714 | en_US |
| dc.subject | gamma rays: galaxies | en_US |
| dc.subject | X-rays: galaxies | en_US |
| dc.subject | radio continuum: galaxies | en_US |
| dc.title | Radio to gamma-ray variability study of blazar S5 0716+714 | en_US |
| dc.type | Article | en_US |
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