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Simulation of ^(12)C+^(12)C elastic scattering at high energy by using the Monte Carlo method

查看全文 作  者:[1]郭晨雷;[1,2]张高龙;[1,3]I.Tanihata;[1]乐小云 高影响力作者 机构地区:[1]School of Physics and Nuclear Energy Engineering,Beihang University;[2]State Key Laboratory of Software Development Environment,Beihang University;[3]Research Center for Nuclear Physics,Osaka University高影响力机构 出  处:《Chinese Physics C》索引2012年第36卷第3期,共5页高影响力期刊 基  金:Supported State Key Laboratory of Software Development Environment (SKLSDE-2011ZX-20);National Natural Science Foundation of China (11175011) 摘  要:The Monte Carlo method is used to simulate the 12C+12C reaction process. Taking into account the size of the incident 12C beam spot and the thickness of the 12C target, the distributions of scattered 12C on the MWPC and the CsI detectors at a detective distance have been simulated. In order to separate elastic scattering from the inelastic scattering with 4.4 MeV excited energy, we set several variables: the kinetic energy of incident 12C, the thickness of the 12C target, the ratio of the excited state, the wire spacing of the MWPC, the energy resolution of the CsI detector and the time resolution of the plastic scintillator. From the simulation results, the preliminary establishment of the experiment system can be determined to be that the beam size of the incident 12C is φ5 mm, the incident kinetic energy is 200-400 A MeV, the target thickness is 2 mm, the ratio of the excited state is 20%, the flight distance of scattered 12C is 3 m, the energy resolution of the CsI detectors is 1%, the time resolution of the plastic scintillator is 0.5%, and the size of the CsI detectors is 7 cm×7 cm, and we need at least 16 CsI detectors to cover a 0° to 5° angular distribution. 关 键 词:蒙特卡罗方法 非弹性散射 模拟 时间分辨率 能量分辨率 塑料闪烁体 高能 飞行距离
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