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Modelling of the neutron production in a mixed beam DT neutron generator

机译:混合束DT中子发生器中的中子产生模型

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Compact DT neutron generators based on accelerators are often built on the principle of a mixed beam operation, meaning that deuterium (D) and tritium (T) are both present in the ion beam and in the target. Moreover, the beam consists of a mixture of ions and ionized molecules (D, T ions, and ionized D-D, T-T and D-T molecules) so the relevant source components come from T(d, n), D(t, n), D(d, n) and T(t, 2n) reactions at different ion energies.The method for assessing the relative amplitudes of different source components (DD, DT, TT) is presented. The assessment relies on the measurement of the neutron spectrum of different DT components (T(d, n) and D(t, n) at different energies) using a high resolution neutron spectrometer, e.g. a diamond detector, fusion reaction cross-sections, and simulations of neutron generation in the target. Through this process a complete description of the neutron source properties of the mixed beam neutron generator can be made and a neutron source description card, in a format suitable for Monte Carlo code MCNP, produced.
机译:基于加速器的紧凑型DT中子发生器通常基于混合束操作原理构建,这意味着离子束和目标中都存在氘(D)和tri(T)。此外,光束由离子和离子化分子(D,T离子以及离子化DD,TT和DT分子)的混合物组成,因此相关的源成分来自T(d,n),D(t,n),D (d,n)和T(t,2n)在不同离子能量下的反应。提出了评估不同源组分(DD,DT,TT)相对振幅的方法。该评估依赖于使用高分辨率中子光谱仪对不同DT成分(不同能量下的T(d,n)和D(t,n))的中子光谱进行测量。钻石探测器,聚变反应截面以及目标中子产生的模拟。通过该过程,可以对混合束中子发生器的中子源特性进行完整描述,并以适合于蒙特卡罗代码MCNP的格式制作中子源描述卡。

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