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^(12)C+^(12)C fusion reaction at astrophysical energies using HOPG target
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作者 Shuo Wang Yun-Zhen Li +44 位作者 Long-Hui Ru Xin-Yu Wang Ning-Tao Zhang Yi-Hua Fan Yu-Cheng Feng Bing-Shui Gao Hao Huang Tao-Yu Jiao Hao Jian Kuo-Ang Li Jia-Qing Li Li-Bin Li Xiao-Bin Li Chen-Gui Lu En-Qiang Liu Bing-Feng Lv Hong-Yi ma Hooi-Jin Ong Fu-Shuai Shi Liang-Ting Sun Xiao-Dong Tang Yu Tang Bing Wang Hou-Qing Wang Yao Yang Yu-Han Zhai Jin-Long Zhang Bo Zhang Peng Zhang Zhi-Chao Zhang Xiao-Dong Xu Wei-Ping Lin Chun Wen De-Hao Xie Zhi-Yong Zhang Xiao Fang Hong-Yi Wu Tao Tian jun-rui ma Cheng-Lin Hao Yu-Na Yang Yu-Yang Yu Xue Liu Yun-Long Lu Si-Tao Zhu 《Nuclear Science and Techniques》 2025年第8期190-198,共9页
Highly oriented pyrolytic graphite (HOPG) is frequently adopted as the reaction target in12C+12C fusion reaction experiments owing to its superior purity.In this study,we investigate the reaction yield dependence on t... Highly oriented pyrolytic graphite (HOPG) is frequently adopted as the reaction target in12C+12C fusion reaction experiments owing to its superior purity.In this study,we investigate the reaction yield dependence on the accumulated beam dose on HOPG target using a novel detection system consisting of a time-projection chamber and silicon array.The reaction yields are significantly reduced under intense beam bombardment owing to radiation damage to the HOPG surface.The α_(0) and p_(0,1) yields decrease by 51.5% and 25%,respectively,when the ^(12)C^(2+) beam dose accumulates at 5 C.Using the novel detection system and HOPG target,the α0yield is determined to be 2.68_(-1.69)^(+4.69)×10^(-17/12) C after correcting for the yield loss due to radiation damage.Our result represents the highest sensitivity achieved to date in direct measurements of ^(12)C(12C,α_(0))^(20)Ne. 展开更多
关键词 Massive star Fusion reaction Projection chamber Low background
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