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New Measurement of Proton Transfer Reactions and Elastic Scattering for 7Li + 13C at 34 MeV

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【作者】 李云居李志宏郭冰苏俊白希祥李二涛王宝祥颜胜权曾晟李志常刘建成刘鑫金孙均樊启文连钢王友宝柳卫平

【Author】 LI Yunju,LI Zhihong,GUO Bing,SU Jun,BAI Xixiang,LI Ertao,WANG Baoxiang ,YAN Shengquan,ZENG Sheng,LI Zhichang,LIU Jiancheng, LIU Xin, JIN Sunjun,FAN Qiwen, LIAN Gang, WANG Youbao,LIU WeipingChina Institute of Atomic Energy, Beijing 102413, China

【机构】 China Institute of Atomic Energy

【摘要】 The 13C(7Li, 6He) 14N reaction is measured at E(7Li) = 34 MeV with the Q3D magnetic spectrometer of HI-13 tandem accelerator. Angular distributions at forward angles for proton transfer to the ground and the first excited states in 14N are obtained. In addition, angular distribution for 7Li + 13 C elastic scattering is also measured. The optical potential parameters for the entrance and exit channels of the transfer reactions are derived by fitting the 7Li + 13C and 6Li + 14N elastic scattering experimental data, and their angular distributions are well reproduced by the distorted wave Born approximation calculations. A phase shift of about 2 between the calculations and the experiment data has been found in the earlier (7Li, 6He) study, whereas no such phase shift is observed in the present work.

【Abstract】 The 13C(7Li, 6He) 14N reaction is measured at E(7Li) = 34 MeV with the Q3D magnetic spectrometer of HI-13 tandem accelerator. Angular distributions at forward angles for proton transfer to the ground and the first excited states in 14N are obtained. In addition, angular distribution for 7Li + 13 C elastic scattering is also measured. The optical potential parameters for the entrance and exit channels of the transfer reactions are derived by fitting the 7Li + 13C and 6Li + 14N elastic scattering experimental data, and their angular distributions are well reproduced by the distorted wave Born approximation calculations. A phase shift of about 2 between the calculations and the experiment data has been found in the earlier (7Li, 6He) study, whereas no such phase shift is observed in the present work.

【基金】 supported by National Natural Science Foundation of China (Nos. 11021504, 10975193, 10735100, 10720101076);the National Basic Research Program of China (No. 2007CB815003)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学与技术(英文版) , 编辑部邮箱 ,2012年06期
  • 【分类号】O571.4
  • 【下载频次】9
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