Development of A Novel Compton Camera for MeV Gamma-Ray Measurement in Space
Pingwei Sun, Wenxiang Fang, Guorong He, Zhen Wu, Jinghe Yang, Jiancheng Zeng, Yiyu Pan, Jiacheng Ding, Enzhao Qi, Jiahao Su, Haoran Yang, Bowen Zhu, Mengjiao Xiao
Abstract
The astrophysical gamma rays in the MeV energy region have not yet been well-explored due to the limitation of detection technology in the past decades, and the famous gamma-ray "MeV gap" exists. Opening the window of MeV gamma-ray is not only critical for the gamma astronomy but also essential for rich frontier researches in astro-particle physics, such as detecting light dark matter, probing the primordial black hole and better understanding of nucleosynthesis. Using the novel scintillators, a three-layer Compton camera with the energy resolution better than 4% and position resolution of ~2 mm is developed. Here we show the design, detailed calibration and validation results of the novel Compton camera, and demonstrate its good ability of MeV gamma-ray source imaging for the upcoming in-orbit mission.
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