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Simulation method for measurement of the cross-section of the^(14)N(n,a)^(11)B reaction using a gridded ionization chamber 被引量:2
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作者 Yi-Wei Hu Hao-Yu Jiang +5 位作者 Zeng-Qi Cui Jie Liu Hao-Fan Bai Huai-Yong Bai Jin-Xiang Chen Guo-Hui Zhang 《Nuclear Science and Techniques》 SCIE EI CAS CSCD 2021年第8期1-11,共11页
A simulation method for measurement of the cross-section of the^(14)N(n,a)^(11)B reaction with gas and solid samples using a gridded ionization chamber(GIC)has been established.Using the simulation,the experimental sp... A simulation method for measurement of the cross-section of the^(14)N(n,a)^(11)B reaction with gas and solid samples using a gridded ionization chamber(GIC)has been established.Using the simulation,the experimental spectra of both^(14)N(n,a)^(11)B events and background from other reactions can be predicted,and the experimental scheme can be optimized.According to the simulation results,the optimal experimental parameters,including the pressure of the working gas and the compositions of the working gas and the sample,can be determined.In addition,the simulation results can be used to determine the valid event area and calculate the detection efficiency for valid events.A measurement of the cross-sections of the^(14)N(n,a)^(11)B reaction at E_(n)=4.25,4.50,4.75,5.00,5.25,and 5.50 MeV,based on the 4.5-MV Van de Graff accelerator at Peking University(PKU)using a GIC as the detector for the outgoing a particles,has been performed.The good agreement of the spectra from the simulation and experiment demonstrated the universality of this simulation method,which can be used to accurately measure neutroninduced light-charged particle emission reactions. 展开更多
关键词 Gridded ionization chamber Monte Carlo simulation Cathode–anode two-dimensional spectrum ^^(14)n(n ^a)^(11)B reaction
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^(14)N-^(15)N同位素交换技术及其在冶金动力学研究中的应用 被引量:1
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作者 平东平 胡晓军 +1 位作者 张亚召 周国治 《安徽工程大学学报》 CAS 2018年第2期34-39,共6页
氮对钢材性能影响很大,研究氮的溶解动力学对于控制钢中的氮含量很有必要.新的^(14)N-^(15)N同位素交换技术通过气相质谱仪在线监测反应过程中气体组分变化,可以消除传统研究方法中液相传质的影响,准确测定氮在钢液和熔渣表面溶解的速... 氮对钢材性能影响很大,研究氮的溶解动力学对于控制钢中的氮含量很有必要.新的^(14)N-^(15)N同位素交换技术通过气相质谱仪在线监测反应过程中气体组分变化,可以消除传统研究方法中液相传质的影响,准确测定氮在钢液和熔渣表面溶解的速率常数,深入分析反应的动力学机理.简要介绍了^(14)N-^(15)N同位素交换技术的原理、实验过程、已有的研究成果,讨论了存在的问题. 展开更多
关键词 14n-15n 同位素交换技术 冶金反应 动力学
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