Identification of the TeV Gamma-ray Source ARGO J2031+4157 with the Cygnus Cocoon
Abstract
The extended TeV gamma-ray source ARGO J2031+4157 (or MGRO J2031+41) is positionally consistent with the Cygnus Cocoon discovered by -LAT at GeV energies in the Cygnus superbubble. Reanalyzing the ARGO-YBJ data collected from November 2007 to January 2013, the angular extension and energy spectrum of ARGO J2031+4157 are evaluated. After subtracting the contribution of the overlapping TeV sources, the ARGO-YBJ excess map is fitted with a two-dimensional Gaussian function in a square region of , finding a source extension = 1.80.5. The observed differential energy spectrum is photons cm s TeV, in the energy range 0.2-10 TeV. The angular extension is consistent with that of the Cygnus Cocoon as measured by -LAT, and the spectrum also shows a good connection with the one measured in the 1-100 GeV energy range. These features suggest to identify ARGO J2031+4157 as the counterpart of the Cygnus Cocoon at TeV energies. The Cygnus Cocoon, located in the star-forming region of Cygnus X, is interpreted as a cocoon of freshly accelerated cosmic rays related to the Cygnus superbubble. The spectral similarity with Supernova Remnants indicates that the particle acceleration inside a superbubble is similar to that in a SNR. The spectral measurements from 1 GeV to 10 TeV allows for the first time to determine the possible spectrum slope of the underlying particle distribution. A hadronic model is adopted to explain the spectral energy distribution.
Keywords
Cite
@article{arxiv.1406.6436,
title = {Identification of the TeV Gamma-ray Source ARGO J2031+4157 with the Cygnus Cocoon},
author = {YBJ Collaboration and B. Bartoli and P. Bernardini and X. J. Bi and P. Branchini and A. Budano and P. Camarri and Z. Cao and R. Cardarelli and S. Catalanotti and S. Z. Chen and T. L. Chen and P. Creti and S. W. Cui and B. Z. Dai and A. DAmone and Danzengluobu and I. De Mitri and B. DEttorre Piazzoli and T. Di Girolamo and G. Di Sciascio and C. F. Feng and Zhaoyang Feng and Zhenyong Feng and Q. B. Gou and Y. Q. Guo and H. H. He and Haibing Hu and Hongbo Hu and M. Iacovacci and R. Iuppa and H. Y. Jia and Labaciren and H. J. Li and G. Liguori and C. Liu and J. Liu and M. Y. Liu and H. Lu and L. L. Ma and X. H. Ma and G. Mancarella and S. M. Mari and G. Marsella and D. Martello and S. Mastroianni and P. Montini and C. C. Ning and M. Panareo and L. Perrone and P. Pistilli and F. Ruggieri and P. Salvini and R. Santonico and P. R. Shen and X. D. Sheng and F. Shi and A. Surdo and Y. H. Tan and P. Vallania and S. Vernetto and C. Vigorito and H. Wang and C. Y. Wu and H. R. Wu and L. Xue and Q. Y. Yang and X. C. Yang and Z. G. Yao and A. F. Yuan and M. Zha and H. M. Zhang and L. Zhang and P. Zhang and X. Y. Zhang and Y. Zhang and J. Zhao and Zhaxiciren and Zhaxisangzhu and X. X. Zhou and F. R. Zhu and Q. Q. Zhu and G. Zizzi},
journal= {arXiv preprint arXiv:1406.6436},
year = {2014}
}
Comments
16 pages, 3 figures, has been accepted by ApJ for publication