The discovery of gravitational waves and gamma-ray bursts heralds the era of multi-messenger astronomy. With the adoption of two small satellites to achieve the all-sky monitoring of gamma-ray bursts, the gravitational wave high-energy electromagnetic counterpart all-sky monitor (GECAM) possesses a quasi-real-time early warning ability and plays an important role in positioning the sources of gravitational waves and in subsequent observations.
Cite
@article{arxiv.2112.04770,
title = {Dedicated SiPM array for GRD of GECAM},
author = {D. L. Zhang and X. L. Sun and Z. H. An and X. Q. Li and X. Y. Wen and K. Gong and C. Cai and Z. Chang and G. Chen and C. Chen and Y. Y. Du and M. Gao and R. Gao and D. Y. Guo and J. J. He and D. J. Hou and Y. G. Li and C. Y. Li and G. Li and L. Li and X. F. Li and M. S. Li and X. H. Liang and X. J. Liu and Y. Q. Liu and F. J. Lu and H. Lu and B. Meng and W. X. Peng and F. Shi and H. Wang and J. Z. Wang and Y. S. Wang and H. Z. Wang and X. Wen and S. Xiao and S. L. Xiong and Y. B. Xu and Y. P. Xu and S. Yang and J. W. Yang and Fan Zhang and S. N. Zhang and C. Y. Zhang and C. M. Zhang and Fei Zhang and X. Y. Zhao and X. Zhou},
journal= {arXiv preprint arXiv:2112.04770},
year = {2021}
}