Accès ouvert déclaré
2024
article
Measurement of attenuation length of the muon content in extensive air showers from 0.3 to 30 PeV with LHAASO
Z. Cao, F. Aharonian, Axikegu, Y. X. Bai, Y. W. Bao, D. Bastieri, Xiao-Jun Bi, Y. J. Bi, Weixin Bian, A.V Bukevich, Qing Cao, Weiwei Cao, Zhe Cao, Jin Chang, J. F. Chang, A. M. Chen, E. S. Chen, H. X. Chen, Liang Chen, Lin Chen, Long Chen, M. J. Chen, M. L. Chen, Q. H. Chen, S. Chen, S. H. Chen, S. Z. Chen, T. L. Chen, Y. Chen, Na Cheng, Y. D. Cheng, M. C. Chu, Maxwell Cui, S. W. Cui, Xiaohong Cui, Y. D. Cui, B. Z. Dai, H. L. Dai, Zi-Gao Dai, Danzengluobu Danzengluobu, X. Q. Dong, K. K. Duan, J. H. Fan, Yichen Fan, Jun Fang, J. H. Fang, K. Fang, Chunsheng Feng, Hansheng Feng, Lei Feng, X. T. Feng, Yuliang Feng, Y. L. Feng, S. Gabici, Bin Gao, Chuyue Gao, Qing Gao, W. Gao, W. K. Gao, M. M. Ge, Tingting Ge, Li‐Sheng Geng, Gwenael Giacinti, G. H. Gong, Q. B. Gou, M. H. Gu, Fulai Guo, J. Guo, Xiaoguang Guo, Y. Q. Guo, Y. Y. Guo, Y. A. Han, O. A. Hannuksela, M. Zahid Hasan, H. H. He, Hao-Ning He, Jiawei He, Y. He, Y. K. Hor, Bowen Hou, C. Hou, Xiaoyu Hou, H. B. Hu, Q. Hu, S. C. Hu, D. H. Huang, T. Q. Huang, W. J. Huang, X. T. Huang, Xiaoyuan Huang, Y. Huang, Y. Y. Huang, X. L. Ji, H.Y Jia, K. Jia, H. B. Jiang, K. Jiang, X. W. Jiang, Z. J. Jiang, Ming Jin, M. M. Kang, I. Karpikov, D. Khangulyan, D. Kuleshov, K. Kurinov, Bingliang Li, C. M. Li, Cheng Li, Cong Li, D. Li, Feng Li, H. B. Li, H. C. Li, Jian Li, Jie Li, K. Li, S. D. Li, W. L. Li, W.L Li, X. R. Li, Xin Li, Y. Z. Li, Zhe Li, Z. Li, E. W. Liang, Liang Yu, S. J. Lin, B. Liu, C. Liu, D. Liu, D. B. Liu, H. Liu, H. D. Liu, J. Liu, Jianglai Liu, M. Y. Liu, Rui Liu, S. M. Liu, Weiwei Liu, Y. Liu, Yinong Liu, Qingming Luo, Yunfeng Luo, H. K. Lv, B. Q., L. L., X. H., J. R. Mao, W. Mitthumsiri, Hui-Jun Mu, Y. C. Nan, A. Neronov, Kenny C. Y. Ng, Lijun Ou, P. Pattarakijwanich, Zhichao Pei, Jinfeng Qi, M. Y. Qi, B. Q. Qiao, J. J. Qin, Ali Raza, D. Ruffolo, A. Sáiz, M. A. Saeed, D. Semikoz, L. Shao, O. Shchegolev, X. D. Sheng, Fengchun Shu, H. C. Song, Yu. V. Stenkin, V. I. Stepanov, Yang Su, Danfeng Sun, Q. N. Sun, X. N. Sun, Zhenyu Sun, J. Takata, P. H. T. Tam, Qi-jie Tang, Ruqi Tang, Z. B. Tang, W. W. Tian, L. H. Wan, C. Wang, Chuxuan Wang, Guomin Wang, H. G. Wang, H. H. Wang, J. C. Wang, Kai Wang, Kai Wang, L. P. Wang, L. Y. Wang, Pei Wang, R. Wang, Xiang-Gao Wang, X. Y. Wang, Y. Wang, Y. D. Wang, Y. J. Wang, Z. H. Wang, Z. X. Wang, Zhen Wang, Zheng Wang, D. M. Wei, Jun-Jie Wei, Y. J. Wei, Tao Wen, C. Y. Wu, H. Wu, Q. W. Wu, S. Wu, X. F. Wu, Yi-Yen Wu, S. Q. Xi, Jun Xia, G. M. Xiang, D. X. Xiao, Guoqing Xiao, Y. L. Xin, Y. M. Xing, Dingrong Xiong, Z. Xiong, D. L. Xu, Rong Xu, R. X. Xu, W. L. Xu, Likun Xue, D. H. Yan, Jing‐Zhi Yan, T. Yan, Chaoran Yang, Chuyuan Yang, Fujia Yang, Fei Yang, Lili Yang, M. J. Yang, R. Z. Yang, W. X. Yang, Yuhua Yao, Z. G. Yao, L. Q. Yin, N. Yin, X. H. You, Z. Y. You, Y. H. Yu, Qiang Yuan, H. Yue, Hui‐Yi Zeng, T. X. Zeng, W. Zeng, M. Zha, B. B. Zhang, F. Zhang, Honggang Zhang, Hai-Ming Zhang, Hengying Zhang, J. L. Zhang, Li Zhang, P. F. Zhang, P. P. Zhang, R. Zhang, S. B. Zhang, S. R. Zhang, S. S. Zhang, X. Zhang, X. P. Zhang, Y. F. Zhang, Yongqiang Zhang, Yong Zhang, Bowen Zhao, Junqian Zhao, Linlin Zhao, L. Z. Zhao, Shunsheng Zhao, Xiaohong Zhao, Fa‐Kun Zheng, W. J. Zhong, Bin Zhou, H. Zhou, Jingzhi Zhou, Meng Zhou, Ping Zhou, Rongpu Zhou, Xiaojuan Zhou, Xuyang Zhou, Baohua Zhu, C. G. Zhu, F. R. Zhu, Haiyan Zhu, K. J. Zhu, Yuan-Chuan Zou, X. Zuo
2Citations signalées — pas une note de qualité
27Institutions déclarées
7Pays d’affiliation déclarés
Résumé fourni par la source
The attenuation length of the muon content in extensive air showers provides important information regarding the generation and development of air showers. This information can be used not only to improve the description of such showers but also to test fundamental models of hadronic interactions. Using data from the LHAASO-KM2A experiment, the development of the muon content in high-energy air showers was studied. The attenuation length of muon content in the air showers was measured from experimental data in the energy range from 0.3 to 30 PeV using the constant intensity cut method. By comparing the attenuation length of the muon content with predictions from high-energy hadronic interaction models (-II-04, 2.3d, and -), it is evident that LHAASO results are significantly shorter than those predicted by the first two models (-II-04 and 2.3d) but relatively close to those predicted by the third model (-). Thus, the LHAASO data favor the - model over the other two models. The three interaction models confirmed an increasing trend in the attenuation length as the cosmic-ray energy increases. Published by the American Physical Society 2024
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Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Measurement of attenuation length of the muon content in extensive air showers from 0.3 to 30 PeV with LHAASO
- Date Crossref
- 14/11/2024
- 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 ne compte pas comme une seconde source scientifique indépendante.
Institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Sujets associés
Astrophysics and Cosmic PhenomenaParticle physics theoretical and experimental studiesDark Matter and Cosmic Phenomena