Investigating the peculiar emission from the new VHE gamma-ray source H1722+119
MAGIC Collaboration: M. L. Ahnen (1), S. Ansoldi (2), L. A. Antonelli, (3), P. Antoranz (4), A. Babic (5), B. Banerjee (6), P. Bangale (7), U., Barres de Almeida (7,24), J. A. Barrio (8), J. Becerra Gonz\'alez (9,25), W., Bednarek (10), E. Bernardini (11,26), B. Biasuzzi (2)

TL;DR
This paper reports the first detection of the BL Lac object H1722+119 in the VHE gamma-ray band, estimates its redshift using multiwavelength data, and models its spectral energy distribution with a helical jet synchrotron self-Compton model.
Contribution
First VHE gamma-ray detection of H1722+119 and redshift estimation using multiwavelength observations, with spectral modeling of its unusual SED behavior.
Findings
Detected in VHE gamma rays with 5.9 sigma significance
Estimated redshift to be approximately 0.34
Modeled SED with an inhomogeneous helical jet SSC model
Abstract
The MAGIC (Major Atmospheric Gamma-ray Imaging Cherenkov) telescopes observed the BL Lac object H1722+119 (redshift unknown) for six consecutive nights between 2013 May 17 and 22, for a total of 12.5 h. The observations were triggered by high activity in the optical band measured by the KVA (Kungliga Vetenskapsakademien) telescope. The source was for the first time detected in the very high energy (VHE, GeV) -ray band with a statistical significance of 5.9 . The integral flux above 150 GeV is estimated to be per cent of the Crab Nebula flux. We used contemporaneous high energy (HE, 100 MeV GeV) -ray observations from Fermi-LAT (Large Area Telescope) to estimate the redshift of the source. Within the framework of the current extragalactic background light models, we estimate the redshift to be .…
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