English

HESS J1943+213: An Extreme Blazar Shining Through The Galactic Plane

High Energy Astrophysical Phenomena 2018-08-29 v1 Cosmology and Nongalactic Astrophysics

Abstract

HESS J1943+213 is a very-high-energy (VHE; >>100 GeV) γ\gamma-ray source in the direction of the Galactic Plane. Studies exploring the classification of the source are converging towards its identification as an extreme synchrotron BL Lac object. Here we present 38 hours of VERITAS observations of HESS J1943+213 taken over two years. The source is detected with \sim20 standard deviations significance, showing a remarkably stable flux and spectrum in VHE γ\gamma-rays. Multi-frequency very-long-baseline array (VLBA) observations of the source confirm the extended, jet-like structure previously found in the 1.6 GHz band with European VLBI Network and detect this component in the 4.6 GHz and the 7.3 GHz bands. The radio spectral indices of the core and the jet and the level of polarization derived from the VLBA observations are in a range typical for blazars. Data from VERITAS, FermiFermi-LAT, SwiftSwift-XRT, FLWO 48'' telescope, and archival infrared and hard X-ray observations are used to construct and model the spectral energy distribution (SED) of the source with a synchrotron-self-Compton model. The well-measured γ\gamma-ray peak of the SED with VERITAS and FermiFermi-LAT provides constraining upper limits on the source redshift. Possible contribution of secondary γ\gamma-rays from ultra-high-energy cosmic ray-initiated electromagnetic cascades to the γ\gamma-ray emission is explored, finding that only a segment of the VHE spectrum can be accommodated with this process. A variability search is performed across X-ray and γ\gamma-ray bands. No statistically significant flux or spectral variability is detected.

Keywords

Cite

@article{arxiv.1806.04144,
  title  = {HESS J1943+213: An Extreme Blazar Shining Through The Galactic Plane},
  author = {The VERITAS Collaboration and A. Archer and W. Benbow and R. Bird and R. Brose and M. Buchovecky and V. Bugaev and W. Cui and M. K. Daniel and A. Falcone and Q. Feng and J. P. Finley and A. Flinders and L. Fortson and A. Furniss and G. H. Gillanders and M. Hütten and D. Hanna and O. Hervet and J. Holder and G. Hughes and T. B. Humensky and C. A. Johnson and P. Kaaret and P. Kar and N. Kelley-Hoskins and D. Kieda and M. Krause and F. Krennrich and S. Kumar and M. J. Lang and T. T. Y. Lin and S. McArthur and P. Moriarty and R. Mukherjee and D. Nieto and S. O'Brien and R. A. Ong and A. N. Otte and N. Park and A. Petrashyk and M. Pohl and A. Popkow and E. Pueschel and J. Quinn and K. Ragan and P. T. Reynolds and G. T. Richards and E. Roache and C. Rulten and I. Sadeh and G. H. Sembroski and K. Shahinyan and J. Tyler and S. P. Wakely and O. M. Weiner and A. Weinstein and R. M. Wells and P. Wilcox and A. Wilhelm and D. A. Williams and W. F. Brisken and P. Pontrelli},
  journal= {arXiv preprint arXiv:1806.04144},
  year   = {2018}
}

Comments

Accepted for publication in The Astrophysical Journal