Direct Measurement of the Cosmic-Ray Iron Spectrum with the Dark Matter Particle Explorer
Presented by
Z. Xu*,
F. Alemanno,
P.X. Ma,
L. Silveri and
Q. Yuan on behalf of
on behalf of the DAMPE Collaboration,
Q. An, P. Azzarello, F.C.T. Barbato, P. Bernardini, X.J. Bi, M.S. Cai, E. Casilli, E. Catanzani, J. Chang, D.Y. Chen, J.L. Chen, Z.F. Chen, M.Y. Cui, T.S. Cui, Y.X. Cui, H.T. Dai, A. De Benedittis, I. De Mitri, F. de Palma, M. Di Santo, Q. Ding, T.K. Dong, Z.X. Dong, G. Donvito, D. Droz, J.L. Duan, K.K. Duan, D. Durso, R.R. Fan, Y.Z. Fan, F. Fang, K. Fang, C.Q. Feng, L. Feng, P. Fusco, V. Gallo, M. Gao, F. Gargano, K. Gong, Y.Z. Gong, D.Y. Guo, J.H. Guo, S.X. Han, Y.M. Hu, G.S. Huang, X.Y. Huang, Y.Y. Huang, M. Ionica, W. Jiang, J. Kong, A. Kotenko, D. Kyratzis, S.J. Lei, W.L. Li, W.H. Li, X. Li, X.Q. Li, Y.M. Liang, C.M. Liu, H. Liu, J. Liu, S.B. Liu, Y. Liu, F. Loparco, C.N. Luo, M. Ma, T. Ma, X.Y. Ma, G. Marsella, M.N. Mazziotta, D. Mo, X.Y. Niu, X. Pan, A. Parenti, W.X. Peng, X.Y. Peng, C. Perrina, R. Qiao, J.N. Rao, A. Ruina, M.M. Salinas, G.Z. Shang, W.H. Shen, Z.Q. Shen, Z.T. Shen, J.X. Song, M. Stolpovskiy, H. Su, M. Su, H. Sun, Z.Y. Sun, A. Surdo, X.J. Teng, A. Tykhonov, H. Wang, J.Z. Wang, L.G. Wang, S. Wang, S.X. Wang, X.L. Wang, Y.F. Wang, Y. Wang, Y.Z. Wang, D.M. Wei, J.J. Wei, Y.F. Wei, D. Wu, J. Wu, L.B. Wu, S.S. Wu, X. Wu, Z.Q. Xia, E.H. Xu, H.T. Xu, Z.H. Xu, Z.Z. Xu, Z.L. Xu, G.F. Xue, H.B. Yang, P. Yang, Y.Q. Yang, H.J. Yao, Y.H. Yu, G.W. Yuan, C. Yue, J.J. Zang, S.X. Zhang, W.Z. Zhang, Y. Zhang, Y.P. Zhang, Y. Zhang, Y.J. Zhang, Y.Q. Zhang, Y.L. Zhang, Z. Zhang, Z.Y. Zhang, C. Zhao, H.Y. Zhao, X.F. Zhao, C.Y. Zhou and Y. Zhuet al. (click to show)*: corresponding author
Pre-published on:
July 10, 2021
Published on:
March 18, 2022
Abstract
Dark Matter Particle Explorer (DAMPE) is a calorimetric-type, satellite-borne detector for observations of high energy electrons, gamma-rays, and cosmic-ray nuclei. Using five years data collected with DAMPE from January 1, 2016 to December 31, 2020, we analyzed the spectrum of iron. Detailed studies of the fragmentation of iron in the detector have been performed using Monte Carlo simulations.
DOI: https://doi.org/10.22323/1.395.0115
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