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Title: INVESTIGATING BROADBAND VARIABILITY OF THE TeV BLAZAR 1ES 1959+650

Journal Article · · The Astrophysical Journal (Online)

We summarize broadband observations of the TeV-emitting blazar 1ES 1959+650, including optical R-band observations by the robotic telescopes Super-LOTIS and iTelescope, UV observations by Swift Ultraviolet and Optical Telescope, X-ray observations by the Swift X-ray Telescope, high-energy gamma-ray observations with the Fermi Large Area Telescope, and very-high-energy (VHE) gamma-ray observations by VERITAS above 315 GeV, all taken between 2012 April 17 and 2012 June 1 (MJD 56034 and 56079). The contemporaneous variability of the broadband spectral energy distribution is explored in the context of a simple synchrotron self Compton (SSC) model. In the SSC emission scenario, we find that the parameters required to represent the high state are significantly different than those in the low state. Motivated by possible evidence of gas in the vicinity of the blazar, we also investigate a reflected emission model to describe the observed variability pattern. This model assumes that the non-thermal emission from the jet is reflected by a nearby cloud of gas, allowing the reflected emission to re-enter the blob and produce an elevated gamma-ray state with no simultaneous elevated synchrotron flux. The model applied here, although not required to explain the observed variability pattern, represents one possible scenario which can describe the observations. As applied to an elevated VHE state of 66% of the Crab Nebula flux, observed on a single night during the observation period, the reflected emission scenario does not support a purely leptonic non-thermal emission mechanism. The reflected emission model does, however, predict a reflected photon field with sufficient energy to enable elevated gamma-ray emission via pion production with protons of energies between 10 and 100 TeV.

Research Organization:
Argonne National Lab. (ANL), Argonne, IL (United States)
Sponsoring Organization:
USDOE Office of Science (SC); National Science Foundation (NSF); Natural Sciences and Engineering Research Council of Canada (NSERC)
Contributing Organization:
The VERITAS Collaboration
DOE Contract Number:
AC02-06CH11357
OSTI ID:
1391641
Journal Information:
The Astrophysical Journal (Online), Vol. 797, Issue 2; ISSN 1538-4357
Publisher:
Institute of Physics (IOP)
Country of Publication:
United States
Language:
English

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Cited By (10)

Empirical multi-wavelength prediction method for very high energy gamma-ray emitting BL Lacertae objects journal December 2017
Broadband characterisation of the very intense TeV flares of the blazar 1ES 1959+650 in 2016 journal June 2020
The long-term Swift observations of the high-energy peaked BL Lacertae source 1ES 1959+650 journal January 2016
High-energy neutrino flux from individual blazar flares journal September 2019
Strong X-Ray and Multiwavelength Flaring Activity for 1ES 1959+650, 2016 August–2017 November journal September 2018
Multi-TeV Flaring from High-energy Blazars: An Evidence of the Photohadronic Process journal October 2019
Broadband characterisation of the very intense TeV flares of the blazar 1ES 1959+650 in 2016 text January 2020
High energy neutrino flux from individual blazar flares text January 2019
Multi-TeV flaring from high energy blazars: An evidence of the photohadronic process text January 2019
Broadband characterisation of the very intense TeV flares of the blazar 1ES 1959+650 in 2016 text January 2020

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