4.5 Article

Multi-wavelength characterization of the blazar S5 0716+714 during an unprecedented outburst phase

Journal

ASTRONOMY & ASTROPHYSICS
Volume 619, Issue -, Pages -

Publisher

EDP SCIENCES S A
DOI: 10.1051/0004-6361/201832677

Keywords

BL Lacertae objects: individual: S5 0716+714; galaxies: active; galaxies: jets; gamma rays: galaxies

Funding

  1. German BMBF
  2. German MPG
  3. Italian INFN
  4. Italian INAF
  5. Swiss National Fund SNF
  6. ERDF under the Spanish MINECO [FPA2015-69818-P, FPA2012-36668, FPA2015-68378-P, FPA2015-69210-C6-2-R, FPA2015-69210-C6-4-R, FPA2015-69210-C6-6-R, AYA2015-71042-P, AYA2016-76012-C3-1-P, ESP2015-71662-C2-2-P, CSD2009-00064]
  7. Japanese JSPS
  8. Japanese MEXT
  9. Spanish Centro de Excelencia Severo Ochoa [SEV-2012-0234, SEV-2015-0548]
  10. Unidad de Excelencia Maria de Maeztu [MDM-2014-0369]
  11. Croatian Science Foundation (HrZZ) [IP-2016-06-9782]
  12. University of Rijeka [13.12.1.3.02]
  13. DFG Collaborative Research Centers [SFB823/C4, SFB876/C3]
  14. Polish National Research Centre [UMO-2016/22/M/ST9/00382]
  15. Brazilian MCTIC
  16. Brazilian CNPq
  17. Brazilian FAPERJ
  18. Istituto Nazionale di Astrofisica in Italy
  19. Centre National d'Etudes Spatiales in France
  20. NASA Postdoctoral Program at the Goddard Space Flight Center
  21. Academy of Finland [212656, 210338, 121148]
  22. Smithsonian Institution
  23. Academia Sinica
  24. NASA [NNX08AW31G, NNX11A043G, NNX14AQ89G]
  25. NSF [AST-0808050, AST-1109911, AST-1615796]
  26. Russian Science Foundation [17-12-01029]
  27. NASA under Fermi Guest Investigator grant [NNX14AQ58G]
  28. UK Space Agency
  29. NSF
  30. BU
  31. Lowell Observatory
  32. INSU/CNRS (France)
  33. MPG (Germany)
  34. IGN (Spain)
  35. Ramon y Cajal grant of the Ministerio de Economia, Industria y Competitividad (MINECO) of Spain
  36. MINECO [AYA2016-80889-P, AYA2013-40825-P, AYA2010-14844]
  37. regional government of Andalucia [P09-FQM-4784]
  38. UK-STFC
  39. NASA [674316, NNX14AQ58G] Funding Source: Federal RePORTER

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Context. The BL Lac object S5 0716+714, a highly variable blazar, underwent an impressive outburst in January 2015 (Phase A), followed by minor activity in February (Phase B). The MAGIC observations were triggered by the optical flux observed in Phase A, corresponding to the brightest ever reported state of the source in the R-band. Aims.The comprehensive dataset collected is investigated in order to shed light on the mechanism of the broadband emission. Methods. Multi-wavelength light curves have been studied together with the broadband spectral energy distributions (SEDs). The sample includes data from Effelsberg, OVRO, Metsahovi, VLBI, CARMA, IRAM, SMA, Swift-UVOT, KVA, Tuorla, Steward, RINGO3, KANATA, AZT-8+ST7, Perkins, LX-200, Swift-XRT, NuSTAR, Fermi-LAT and MAGIC. Results. The flaring state of Phase A was detected in all the energy bands, providing for the first time a multi-wavelength sample of simultaneous data from the radio band to the very-high-energy (VHE, E> 100 GeV). In the constructed SED, the Swift-XRT +NuSTAR data constrain the transition between the synchrotron and inverse Compton components very accurately, while the second peak is constrained from 0.1 GeV to 600 GeV by Fermi+MAGIC data. The broadband SED cannot be described with a one-zone synchrotron self-Compton model as it severely underestimates the optical flux in order to reproduce the X-ray to y-ray data. Instead we use a two-zone model. The electric vector position angle (EVPA) shows an unprecedented fast rotation. An estimation of the redshift of the source by combined high-energy (HE, 0.1 GeV < E < 100 GeV) and VHE data provides a value of ,z = 0.31 +/- 0.02(stats) +/- 0.05(sys), confirming the literature value. Conclusions. The data show the VHE emission originating in the entrance and exit of a superluminal knot in and out of a recollimation shock in the inner jet. A shock-shock interaction in the jet seems responsible for the observed flares and EVPA swing. This scenario is also consistent with the SED modeling.

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