Peta-electron volt gamma-ray emission from the Crab Nebula
Abstract
The Crab pulsar and the surrounding nebula powered by the pulsar's rotational energy through the formation and termination of a relativistic electron-positron wind is a bright source of gamma-rays carrying crucial information about this complex conglomerate. We report the detection of -rays with a spectrum showing gradual steepening over three energy decades, from to petaelectronvolt (PeV). The ultra-high-energy photons exhibit the presence of a PeV electron accelerator (a pevatron) with an acceleration rate exceeding 15% of the absolute theoretical limit. Assuming that unpulsed -rays are produced at the termination of the pulsar's wind, we constrain the pevatron's size, between and pc, and the magnetic field G. The production rate of PeV electrons, erg , constitutes 0.5% of the pulsar's spin-down luminosity, although we do not exclude a non-negligible contribution of PeV protons to the production of the highest energy -rays.
Keywords
Cite
@article{arxiv.2111.06545,
title = {Peta-electron volt gamma-ray emission from the Crab Nebula},
author = {The LHAASO Collaboration and Zhen Cao and F. Aharonian and Q. An and Axikegu and L. X. Bai and Y. X. Bai and Y. W. Bao and D. Bastieri and X. J. Bi and Y. J. Bi and H. Cai and J. T. Cai and Zhe Cao and J. Chang and J. F. Chang and B. M. Chen and E. S. Chen and J. Chen and Liang Chen and Liang Chen and Long Chen and M. J. Chen and M. L. Chen and Q. H. Chen and S. H. Chen and S. Z. Chen and T. L. Chen and X. L. Chen and Y. Chen and N. Cheng and Y. D. Cheng and S. W. Cui and X. H. Cui and Y. D. Cui and B. D'Ettorre Piazzoli and B. Z. Dai and H. L. Dai and Z. G. Dai and Danzengluobu and D. della Volpe and X. J. Dong and K. K. Duan and J. H. Fan and Y. Z. Fan and Z. X. Fan and J. Fang and K. Fang and C. F. Feng and L. Feng and S. H. Feng and Y. L. Feng and B. Gao and C. D. Gao and L. Q. Gao and Q. Gao and W. Gao and M. M. Ge and L. S. Geng and G. H. Gong and Q. B. Gou and M. H. Gu and F. L. Guo and J. G. Guo and X. L. Guo and Y. Q. Guo and Y. Y. Guo and Y. A. Han and H. H. He and H. N. He and J. C. He and S. L. He and X. B. He and Y. He and M. Heller and Y. K. Hor and C. Hou and X. Hou and H. B. Hu and S. Hu and S. C. Hu and X. J. Hu and D. H. Huang and Q. L. Huang and W. H. Huang and X. T. Huang and X. Y. Huang and Z. C. Huang and F. Ji and X. L. Ji and H. Y. Jia and K. Jiang and Z. J. Jiang and C. Jin and T. Ke and D. Kuleshov and K. Levochkin and B. B. Li and Cheng Li and Cong Li and F. Li and H. B. Li and H. C. Li and H. Y. Li and Jie Li and Jian Li and K. Li and W. L. Li and X. R. Li and Xin Li and Xin Li and Y. Li and Y. Z. Li and Zhe Li and Zhuo Li and E. W. Liang and Y. F. Liang and S. J. Lin and B. Liu and C. Liu and D. Liu and H. Liu and H. D. Liu and J. Liu and J. L. Liu and J. S. Liu and J. Y. Liu and M. Y. Liu and R. Y. Liu and S. M. Liu and W. Liu and Y. Liu and Y. N. Liu and Z. X. Liu and W. J. Long and R. Lu and H. K. Lv and B. Q. Ma and L. L. Ma and X. H. Ma and J. R. Mao and A. Masood and Z. Min and W. Mitthumsiri and T. Montaruli and Y. C. Nan and B. Y. Pang and P. Pattarakijwanich and Z. Y. Pei and M. Y. Qi and Y. Q. Qi and B. Q. Qiao and J. J. Qin and D. Ruffolo and V. Rulev and A. Sáiz and L. Shao and O. Shchegolev and X. D. Sheng and J. Y. Shi and H. C. Song and Yu. V. Stenkin and V. Stepanov and Y. Su and Q. N. Sun and X. N. Sun and Z. B. Sun and P. H. T. Tam and Z. B. Tang and W. W. Tian and B. D. Wang and C. Wang and H. Wang and H. G. Wang and J. C. Wang and J. S. Wang and L. P. Wang and L. Y. Wang and R. N. Wang and Wei Wang and Wei Wang and X. G. Wang and X. J. Wang and X. Y. Wang and Y. Wang and Y. D. Wang and Y. J. Wang and Y. P. Wang and Z. H. Wang and Z. X. Wang and Zhen Wang and Zheng Wang and D. M. Wei and J. J. Wei and Y. J. Wei and T. Wen and C. Y. Wu and H. R. Wu and S. Wu and W. X. Wu and X. F. Wu and S. Q. Xi and J. Xia and J. J. Xia and G. M. Xiang and D. X. Xiao and G. Xiao and H. B. Xiao and G. G. Xin and Y. L. Xin and Y. Xing and D. L. Xu and R. X. Xu and L. Xue and D. H. Yan and J. Z. Yan and C. W. Yang and F. F. Yang and J. Y. Yang and L. L. Yang and M. J. Yang and R. Z. Yang and S. B. Yang and Y. H. Yao and Z. G. Yao and Y. M. Ye and L. Q. Yin and N. Yin and X. H. You and Z. Y. You and Y. H. Yu and Q. Yuan and H. D. Zeng and T. X. Zeng and W. Zeng and Z. K. Zeng and M. Zha and X. X. Zhai and B. B. Zhang and H. M. Zhang and H. Y. Zhang and J. L. Zhang and J. W. Zhang and L. X. Zhang and Li Zhang and Lu Zhang and P. F. Zhang and P. P. Zhang and R. Zhang and S. R. Zhang and S. S. Zhang and X. Zhang and X. P. Zhang and Y. F. Zhang and Y. L. Zhang and Yi Zhang and Yong Zhang and B. Zhao and J. Zhao and L. Zhao and L. Z. Zhao and S. P. Zhao and F. Zheng and Y. Zheng and B. Zhou and H. Zhou and J. N. Zhou and P. Zhou and R. Zhou and X. X. Zhou and C. G. Zhu and F. R. Zhu and H. Zhu and K. J. Zhu and X. Zuo},
journal= {arXiv preprint arXiv:2111.06545},
year = {2021}
}
Comments
43 pages, 13 figures, 2 tables; Published in Science