Accès ouvert déclaré
2026
article
Evidence of Cosmic-Ray Acceleration up to Sub-PeV Energies in the Supernova Remnant IC 443.
Z. Cao, F Aharonian, Yuting Bai, Yiwang Bao, D. Bastieri, Xiao-Jun Bi, Y.J Bi, W Bian, A.V Bukevich, Chang Cai, Weiling Cao, Zhe Cao, Jiang Chang, J. F. Chang, A.M Chen, E.S Chen, G.H Chen, Hua-Xing Chen, Liang Chen, Long Chen, M.J Chen, M.L Chen, Qin Chen, Shaomin Chen, Shaw H. Chen, S. Z. Chen, T. L. Chen, Y Chen, Ning Cheng, S. W. Cui, X. H. Cui, Z. G. Dai, Y. Z. Fan, J. Fang, Kai Fang, H Feng, Xia‐Ting Feng, Yunhe Feng, S. Gabici, Bo Gao, Qing Gao, Wei Gao, Tingting Ge, Li‐Sheng Geng, Gwenael Giacinti, Fulai Guo, Jingchuan Guo, Ying Guo, Y. Y. Guo, O. A. Hannuksela, M. Zahid Hasan, H. N. He, Jiangbiao He, Xu He, Y. He, Sergio Hernández Cadena, C. Hou, Xin Hou, S. C. Hu, Chun-Hao P. Huang, Jian‐Jang Huang, Tengfei Huang, W. J. Huang, X.Y Huang, Y. Huang, Yanyi Huang, H.Y Jia, Ke Jia, K. Jiang, Zhuo Jiang, Ming Jin, S Kaci, I. Karpikov, D. Khangulyan, D. Kuleshov, K. Kurinov, Cheng Li, Cong Li, Di Li, F. Li, H.C Li, Jian Li, Jie Li, Kai Li, Li Li, Shaoquan Li, T.Y Li, Weimin Li, X.R Li, Xin Li, Yulin Li, Zhe Li, Zhuo Li, Yun-Feng Liang, Yun Liu, C Liu, D. Liu, Haiqing Liu, H.D. Liu, J.L Liu, J.R Liu, Jie Liu, Rui Liu, S.M Liu, Xu Liu, Y. N. Liu, Yang Liu, Quantian Luo, Yi Luo, B. Q., L.L Ma, Xiaohua Ma, J. R. Mao, W. Mitthumsiri, Haowei Mu, A. Neronov, Michael Y. Ni, L. S. Nie, P. Pattarakijwanich, Ming Qi, Jiajun Qin, Ali Raza, D. Ruffolo, A. Sáiz, D. Semikoz, Li Shao, O. Shchegolev, X.D Sheng, V. I. Stepanov, Yang Su, Hui Sun, X.N Sun, Zhifeng Sun, J. Takata, Qing-Wen Tang, Ryan W. Tang, C. Wang, Haigang Wang, Jincheng Wang, Kai Wang, Kai Wang, Kai Wang, L.Y Wang, Rui Wang, Wenxin Wang, Xuefeng Wang, Y.D Wang, Yougang Wang, Zheng Wang, Yujie Wei, S.S Weng, Qi Wu, Xiaolong Wu, Sheng Wu, J. Xia, Jianxin Xia, Guoqing Xiao, Yu Xing, D.R Xiong, Z. Xiong, Rong Xu, Wang Xu, L. Xue, Chul Woo Yang, T Yan, Fang Yang, Lili Yang, M. J. Yang, Ruizhi Yang, Zhihong Yang, N. Yin, Han Yue, Xiaofei Zeng, Wei Zeng, M. Zha, C Zhang, F Zhang, Hengyun Zhang, J.L Zhang, Haowen Zhang, Li Zhang, S.R Zhang, Ruisheng Zhang, W.Y Zhang, Xiong Zhang, Yi Zhang, Yong Zhang, Jie Zhao, Shujie Zhao, Xinsheng Zhao, Z.H Zhao, F. Zheng, Bo Zhou, H. Zhou, Mingfei Zhou, Ping Zhou, Rui Zhou, F. R. Zhu, Kejun Zhu, Hao Zhu, X. Zuo
0Citations signalées, ce qui n’est pas une note de qualité
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7Pays d’affiliation déclarés
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Le résumé fourni par la source
Supernova remnants (SNRs) have been considered as the primary contributors to cosmic rays (CRs) in our Galaxy. However, the maximum energy of particles that can be accelerated by shocks of SNRs is uncertain, and SNRs' contribution to CRs around PeV energies is unclear. In this Letter, we present observations of high-energy γ-ray emission from the SNR IC 443 using the Large High Altitude Air Shower Observatory (LHAASO). The morphological analysis reveals a pointlike source whose location and spectrum are consistent with those of the Fermi-LAT-detected compact source with π^{0}-decay signature, and a more extended source that is associated with a newly discovered Fermi source. The spectrum of the point source can be described by a power-law function with an index of ∼3.0, extending beyond ∼30 TeV without apparent cutoff. Assuming a hadronic origin of the γ-ray emission, the 95% lower limit of accelerated protons reaches about 300 TeV. The extended source might be associated with IC 443, SNR G189.6+3.3, or the putative pulsar wind nebula CXOU J061705.3+222127, and can be explained by either a hadronic or a leptonic model with particles reaching hundreds of TeV. These LHAASO results provide compelling evidence that sub-PeV CRs can be accelerated efficiently by shocks of SNRs.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Evidence of Cosmic-Ray Acceleration up to Sub-PeV Energies in the Supernova Remnant IC 443
- Date Crossref
- 23/04/2026
- Éditeur
- American Physical Society (APS)
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Astrophysics and Cosmic PhenomenaDark Matter and Cosmic PhenomenaNeutrino Physics Research