A Very High Energy $\gamma$-Ray Survey towards the Cygnus Region of the Galaxy
The VERITAS Collaboration, A. U. Abeysekara, A. Archer, T. Aune, W., Benbow, R. Bird, R. Brose, M. Buchovecky, V. Bugaev, W. Cui, M. K. Daniel, A., Falcone, Q. Feng, J. P. Finley, H. Fleischhack, A. Flinders, L. Fortson, A., Furniss, E. V. Gotthelf, J. Grube, D. Hanna, O. Hervet

TL;DR
This study presents a comprehensive multi-year gamma-ray survey of the Cygnus region, identifying new sources, resolving extended emissions, and providing detailed spectral and morphological analyses to understand cosmic ray origins.
Contribution
It offers the first detailed gamma-ray view of the Cygnus region, resolving sources and modeling spectra from 1 GeV to 10 TeV with multi-instrument data.
Findings
Identification of a Fermi-LAT counterpart to a VHE source
Resolution of an extended VHE source into two candidates
Detection of a continuous spectrum from 1 GeV to 10 TeV
Abstract
We present results from deep observations towards the Cygnus region using 300 hours of very-high-energy (VHE) -ray data taken with the VERITAS Cherenkov telescope array and over seven years of high-energy -ray data taken with the Fermi satellite at an energy above 1 GeV. As the brightest region of diffuse -ray emission in the northern sky, the Cygnus region provides a promising area to probe the origins of cosmic rays. We report the identification of a potential Fermi-LAT counterpart to VER J2031+415 (TeV J2032+4130), and resolve the extended VHE source VER J2019+368 into two source candidates (VER J2018+367* and VER J2020+368*) and characterize their energy spectra. The Fermi-LAT morphology of 3FGL 2021.0+4031e (the Gamma-Cygni supernova remnant) was examined and a region of enhanced emission coincident with VER J2019+407 was identified and jointly fit with…
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