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ZHANG Xue-heng, SUN Zhi-yu, #, WANG Meng, CHEN Zhi-qiang, HU Zheng-guo, WANG Jian-song, MAO Rui-shi, ZHANG Xue-ying, ZHAO Tie-cheng, LI Chen, XU Hu-san, XIAO Guo-qing, YUAN Xiao-hua, XU Zhi-guo, CHEN Ruo-fu, GUO Zhong-yan, WANG Yue, HUANG Tian-heng, ZHANG Hong-bin. Study on Transmission of RIBLL[J]. Nuclear Physics Review, 2009, 26(3): 203-209. doi: 10.11804/NuclPhysRev.26.03.203
Citation: ZHANG Xue-heng, SUN Zhi-yu, #, WANG Meng, CHEN Zhi-qiang, HU Zheng-guo, WANG Jian-song, MAO Rui-shi, ZHANG Xue-ying, ZHAO Tie-cheng, LI Chen, XU Hu-san, XIAO Guo-qing, YUAN Xiao-hua, XU Zhi-guo, CHEN Ruo-fu, GUO Zhong-yan, WANG Yue, HUANG Tian-heng, ZHANG Hong-bin. Study on Transmission of RIBLL[J]. Nuclear Physics Review, 2009, 26(3): 203-209. doi: 10.11804/NuclPhysRev.26.03.203

Study on Transmission of RIBLL

doi: 10.11804/NuclPhysRev.26.03.203
  • Received Date: 1900-01-01
  • Rev Recd Date: 1900-01-01
  • Publish Date: 2009-09-20
  • he transmission of RIBLL has been studied by experimental measurement and Monte Carlo simulation methods. The analysis of influence factors of the simulated transmission has been accomplished, and it was found that the momentum distribution of fragments is one of the most important factors influencing the simulation results. Furthermore, through comparing the measured and simulated results, it is found that the simulated result is larger than the measured transmission for most fragments and the maximal difference between them is about several tens of times. This simulation is a good theory tools for estimating the intensity of the secondary beam and designing the experiment in the future.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Study on Transmission of RIBLL

doi: 10.11804/NuclPhysRev.26.03.203

Abstract: he transmission of RIBLL has been studied by experimental measurement and Monte Carlo simulation methods. The analysis of influence factors of the simulated transmission has been accomplished, and it was found that the momentum distribution of fragments is one of the most important factors influencing the simulation results. Furthermore, through comparing the measured and simulated results, it is found that the simulated result is larger than the measured transmission for most fragments and the maximal difference between them is about several tens of times. This simulation is a good theory tools for estimating the intensity of the secondary beam and designing the experiment in the future.

ZHANG Xue-heng, SUN Zhi-yu, #, WANG Meng, CHEN Zhi-qiang, HU Zheng-guo, WANG Jian-song, MAO Rui-shi, ZHANG Xue-ying, ZHAO Tie-cheng, LI Chen, XU Hu-san, XIAO Guo-qing, YUAN Xiao-hua, XU Zhi-guo, CHEN Ruo-fu, GUO Zhong-yan, WANG Yue, HUANG Tian-heng, ZHANG Hong-bin. Study on Transmission of RIBLL[J]. Nuclear Physics Review, 2009, 26(3): 203-209. doi: 10.11804/NuclPhysRev.26.03.203
Citation: ZHANG Xue-heng, SUN Zhi-yu, #, WANG Meng, CHEN Zhi-qiang, HU Zheng-guo, WANG Jian-song, MAO Rui-shi, ZHANG Xue-ying, ZHAO Tie-cheng, LI Chen, XU Hu-san, XIAO Guo-qing, YUAN Xiao-hua, XU Zhi-guo, CHEN Ruo-fu, GUO Zhong-yan, WANG Yue, HUANG Tian-heng, ZHANG Hong-bin. Study on Transmission of RIBLL[J]. Nuclear Physics Review, 2009, 26(3): 203-209. doi: 10.11804/NuclPhysRev.26.03.203

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