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Spectral composition of thermonuclear particle and recoil nuclear emissions from laser fusion targets intended for modern ignition experiments

机译:用于现代点火实验的激光融合靶标的热核颗粒和反冲核发射的光谱组成

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Determination of the spectra and yields of thermonuclear particles is an actual research line for inertial confinement fusion (ICF) in two areas: the development of diagnostic methods for ICF plasma and thermonuclear reactor design for energy production. The latter is particularly important for thermonuclear neutron emission, which contains the bulk of the evolving energy. This work is devoted to the determination and analysis of the energy spectrum composition of the emissions of thermonuclear neutrons, charged thermonuclear particles and recoil nuclei from ICF targets, which correspond to a laser pulse energy of approximate to 2 MJ and are designed for modern experiments to achieve a positive energy yield. The spectra are determined on the basis of hydrodynamic numerical simulations of ICF target burnup, modeling the generation of thermonuclear particles and their interaction with the target by means of the Monte Carlo method. The spectrum characteristics are discussed with reference to the problems of corpuscular diagnostics and radiation damage to the materials of thermonuclear reactor units.
机译:热核颗粒的光谱和产量的测定是两个方面的惯性监禁融合(ICF)的实际研究线:ICF等离子体诊断方法的开发和能量生产的热核反应器设计。后者对于热核中子发射尤其重要,其含有大部分演化能量。该工作致力于测定和分析来自ICF靶标的热核中子排放,电荷的热核颗粒和反冲核的能谱组成,与大约2 MJ的激光脉冲能量相对应,并设计用于现代实验达到积极的能源产量。基于ICF靶标燃烧的流体动力学数值确定光谱,通过蒙特卡罗方法模拟热核颗粒的产生及其与靶的相互作用。参考热核反应器单元的材料的多孔诊断和辐射损伤的问题讨论了光谱特性。

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