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Further Analysis of Neutron Double-Differential Cross Section of n + ^16O at 14.1 MeV and 18 MeV
引用本文:DUAN Jun-Feng YAN Yu-Liang WANG Ji-Min SUN Xiao-Jun ZHANG Jing-Shang. Further Analysis of Neutron Double-Differential Cross Section of n + ^16O at 14.1 MeV and 18 MeV[J]. 理论物理通讯, 2005, 44(4): 701-706
作者姓名:DUAN Jun-Feng YAN Yu-Liang WANG Ji-Min SUN Xiao-Jun ZHANG Jing-Shang
作者单位:[1]China Institute of Atomic Energy, P.O. Box 275(41), Beijing 102413, China [2]College of Physics and Information Technology, Guangxi Normal University, Guilin 541004, China
摘    要:By using a new reaction model for light nuclei, the double-differential cross section of total outgoing neutron with LUNF code for n+^16O reactions at En=14.1 MeV and 18 MeV have been calculated and analyzed. In this paper the opened reaction channels, which have contribution to emitting the neutrons, are listed in detail. To improve the fitting results the direct inelastic scattering mechanism is involved. The calculating results agree fairly well with the experimental data at E,~ = 14.1 MeV and the deviation from calculated results and experimental data in low energy region at En= 18 MeV has been analyzed. Since the possibility of 5He has been affirmed theoretically [J.S. Zhang, Sci. Chin. G 47 (2004) 137], so 5He emission from n+ ^16O reaction is taken into account, which plays an important role at the region of the outgoing neutron energy εn〈3 MeV in total outgoing neutron energy-angular spectrum. The calculated results indicate that the pre-equilibrium mechanism dominates the whole reaction processes, and the recoil effect in light nuclear reactions is essentially important.

关 键 词:中子 双微分交叉截面 功率角光谱 轻子反应
收稿时间:2004-12-24
修稿时间:2004-12-24

Further Analysis of Neutron Double-Differential Cross Section ofn+16O at 14.1 MeV and 18 MeV
DUAN;Jun-Feng;YAN;Yu-Liang;WANG;Ji-Min;SUN;Xiao-Jun;ZHANG;Jing-Shang. Further Analysis of Neutron Double-Differential Cross Section ofn+16O at 14.1 MeV and 18 MeV[J]. Communications in Theoretical Physics, 2005, 44(4): 701-706
Authors:DUAN  Jun-Feng  YAN  Yu-Liang  WANG  Ji-Min  SUN  Xiao-Jun  ZHANG  Jing-Shang
Affiliation:1. China Institute of Atomic Energy, P.O. Box 275(41), Beijing 102413, China;2. College of Physics and Information Technology,Guangxi Normal University, Guilin 541004, China
Abstract:By using a new reaction model for light nuclei, the double-differential cross section of total outgoing neutron with LUNF code for n+16O reactions at En=14.1 MeV and 18 MeV have been calculated and analyzed. In this paper the opened reaction channels, which have contribution to emitting the neutrons, are listed in detail. To improve the fitting results the direct inelastic scattering mechanism is involved. The calculating results agree fairly well with the experimental data at En=14.1 MeV and the deviation from calculatedresults and experimental data in low energy region at En=18 MeV has been analyzed. Since the possibility of 5He has been affirmed theoretically [J.S. Zhang, Sci. Chin. G 47 (2004) 137],so 5He emission from n+16O reaction is taken into account, which plays an important role at the region of the outgoing neutronenergy εn<3 MeV in total outgoing neutron energy-angularspectrum. The calculated results indicate that the pre-equilibrium mechanism dominates the whole reaction processes, and the recoil effect in light nuclear reactions is essentially important.
Keywords:total outgoing neutron energy-angular spectrum   light nucleus reaction
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