VERITAS Discovery of Very High Energy Gamma-Ray Emission from S3 1227+25 and Multiwavelength Observations
Acharyya A; Adams CB; Archer A; Bangale P; Benbow W; Brill A; Christiansen JL; Chromey AJ; Errando M; Falcone A; Feng Q; Finley JP; Foote GM; Fortson L; Furniss A; Gallagher G; Hanlon W; Hanna D; Hervet O; Hinrichs CE; Hoang J; Holder J; Jin W; Johnson MN; Kaaret P; Kertzman M; Kieda D; Kleiner TK; Korzoun N; Krennrich F; Lang MJ; Lundy M; Maier G; McGrath CE; Millard MJ; Millis J; Mooney CL; Moriarty P; Mukherjee R; O'Brien S; Ong RA; Pohl M; Pueschel E; Quinn J; Ragan K; Reynolds PT; Ribeiro D; Roache E; Sadeh I; Sadun AC; Saha L; Santander M; Sembroski GH; Shang R; Splettstoesser M; Talluri AK; Tucci JV; Vassiliev VV; Williams DA; Wong SL; Hovatta T; Jorstad SG; Kiehlmann S; Lahteenmaeki A; Liodakis I; Marscher AP; Max-Moerbeck W; Readhead ACS; Reeves R; Smith PS; Tornikoski M
https://urn.fi/URN:NBN:fi-fe2025082787591
Tiivistelmä
We report the detection of very high energy gamma-ray emission from the blazar S3 1227+25 (VER J1230+253) with the Very Energetic Radiation Imaging Telescope Array System (VERITAS). VERITAS observations of the source were triggered by the detection of a hard-spectrum GeV flare on 2015 May 15 with the Fermi-Large Area Telescope (LAT). A combined 5 hr VERITAS exposure on May 16 and 18 resulted in a strong 13σ detection with a differential photon spectral index, Γ = 3.8 ± 0.4, and a flux level at 9% of the Crab Nebula above 120 GeV. This also triggered target-of-opportunity observations with Swift, optical photometry, polarimetry, and radio measurements, also presented in this work, in addition to the VERITAS and Fermi-LAT data. A temporal analysis of the gamma-ray flux during this period finds evidence of a shortest variability timescale of τobs = 6.2 ± 0.9 hr, indicating emission from compact regions within the jet, and the combined gamma-ray spectrum shows no strong evidence of a spectral cutoff. An investigation into correlations between the multiwavelength observations found evidence of optical and gamma-ray correlations, suggesting a single-zone model of emission. Finally, the multiwavelength spectral energy distribution is well described by a simple one-zone leptonic synchrotron self-Compton radiation model.
Kokoelmat
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