Charge-dependent spectral softenings of primary cosmic-rays below the knee
Abstract
In most particle acceleration or propagation theories, the characteristic features of the cosmic ray spectra due to acceleration limits or propagation phase changes are charge dependent. Alternatively, the interaction scenario would expect mass dependent spectral features in general. The observational verification of which relation takes effect in nature is still lack due to the difficulty of measuring the spectra of individual particles up to very high energies. Here we report direct measurements of the carbon, oxygen, and iron spectra from ~20 gigavolts to ~100 teravolts (~60 teravolts for iron) with 9 years of on-orbit data collected by the Dark Matter Particle Explorer. Distinct spectral softenings have been directly detected in these spectra for the first time. Combined with the updated proton and helium spectra, the spectral softening appears universally at a rigidity of ~15 teravolts. A nuclei mass dependent softening is rejected at a confidence level of >99.999%. Possible interpretations of these results, including a nearby cosmic ray source and other models such as the propagation effect, are discussed.
Keywords
Cite
@article{arxiv.2511.05409,
title = {Charge-dependent spectral softenings of primary cosmic-rays below the knee},
author = {DAMPE Collaboration and Francesca Alemanno and Qi An and Philipp Azzarello and Felicia-Carla-Tiziana Barbato and Paolo Bernardini and Xiao-Jun Bi and Hugo Valentin Boutin and Irene Cagnoli and Ming-Sheng Cai and Elisabetta Casilli and Jin Chang and Deng-Yi Chen and Jun-Ling Chen and Zhan-Fang Chen and Zi-Xuan Chen and Paul Coppin and Ming-Yang Cui and Tian-Shu Cui and Ivan De Mitri and Francesco de Palma and Adriano Di Giovanni and Tie-Kuang Dong and Zhen-Xing Dong and Giacinto Donvito and Jing-Lai Duan and Kai-Kai Duan and Rui-Rui Fan and Yi-Zhong Fan and Fang Fang and Kun Fang and Chang-Qing Feng and Lei Feng and Sara Fogliacco and Jennifer-Maria Frieden and Piergiorgio Fusco and Min Gao and Fabio Gargano and Essna Ghose and Ke Gong and Yi-Zhong Gong and Dong-Ya Guo and Jian-Hua Guo and Shuang-Xue Han and Yi-Ming Hu and Guang-Shun Huang and Xiao-Yuan Huang and Yong-Yi Huang and Maria Ionica and Lu-Yao Jiang and Wei Jiang and Yao-Zu Jiang and Jie Kong and Andrii Kotenko and Dimitrios Kyratzis and Shi-Jun Lei and Bo Li and Manbing Li and Wei-Liang Li and Wen-Hao Li and Xiang Li and Xian-Qiang Li and Yao-Ming Liang and Cheng-Ming Liu and Hao Liu and Jie Liu and Shu-Bin Liu and Yang Liu and Francesco Loparco and Miao Ma and Peng-Xiong Ma and Tao Ma and Xiao-Yong Ma and Giovanni Marsella and Mario-Nicola Mazziotta and Dan Mo and Yu Nie and Xiao-Yang Niu and Andrea Parenti and Wen-Xi Peng and Xiao-Yan Peng and Chiara Perrina and Enzo Putti-Garcia and Rui Qiao and Jia-Ning Rao and Yi Rong and Andrea Serpolla and Ritabrata Sarkar and Pierpaolo Savina and Zhi Shangguan and Wei-Hua Shen and Zhao-Qiang Shen and Zhong-Tao Shen and Leandro Silveri and Jing-Xing Song and Hong Su and Meng Su and Hao-Ran Sun and Zhi-Yu Sun and Antonio Surdo and Xue-Jian Teng and Andrii Tykhonov and Gui-Fu Wang and Jin-Zhou Wang and Lian-Guo Wang and Shen Wang and Xiao-Lian Wang and Yan-Fang Wang and Da-Ming Wei and Jia-Ju Wei and Yi-Feng Wei and Di Wu and Jian Wu and Sha-Sha Wu and Xin Wu and Zi-Qing Xia and Zheng Xiong and En-Heng Xu and Hai-Tao Xu and Jing Xu and Zhi-Hui Xu and Zi-Zong Xu and Zun-Lei Xu and Guo-Feng Xue and Ming-Yu Yan and Hai-Bo Yang and Peng Yang and Ya-Qing Yang and Hui-Jun Yao and Yu-Hong Yu and Qiang Yuan and Chuan Yue and Jing-Jing Zang and Sheng-Xia Zhang and Wen-Zhang Zhang and Yan Zhang and Ya-Peng Zhang and Yi Zhang and Yong-Jie Zhang and Yong-Qiang Zhang and Yun-Long Zhang and Zhe Zhang and Zhi-Yong Zhang and Cong Zhao and Hong-Yun Zhao and Xun-Feng Zhao and Chang-Yi Zhou and Xun Zhu and Yan Zhu},
journal= {arXiv preprint arXiv:2511.05409},
year = {2026}
}
Comments
36 pages, 8 figures, published online in Nature