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Thermonuclear targets for direct-drive ignition by a megajoule laser pulse

机译:通过兆焦激光脉冲直接驱动点火的热核靶

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Central ignition of a thin two-layer-shell fusion target that is directly driven by a 2-MJ profiled pulse of Nd laser second-harmonic radiation has been studied. The parameters of the target were selected so as to provide effective acceleration of the shell toward the center, which was sufficient for the onset of ignition under conditions of increased hydrodynamic stability of the ablator acceleration and compression. The aspect ratio of the inner deuterium-tritium layer of the shell does not exceed 15, provided that a major part (above 75%) of the outer layer (plastic ablator) is evaporated by the instant of maximum compression. The investigation is based on two series of numerical calculations that were performed using one-dimensional (1D) hydrodynamic codes. The first 1D code was used to calculate the absorption of the profiled laser-radiation pulse (including calculation of the total absorption coefficient with allowance for the inverse bremsstrahlung and resonance mechanisms) and the spatial distribution of target heating for a real geometry of irradiation using 192 laser beams in a scheme of focusing with a cubo-octahedral symmetry. The second 1D code was used for simulating the total cycle of target evolution under the action of absorbed laser radiation and for determining the thermonuclear gain that was achieved with a given target.
机译:研究了由Nd激光二次谐波辐射的2-MJ轮廓脉冲直接驱动的薄两层壳聚变靶的中央点火。选择目标的参数以提供壳向中心的有效加速度,这足以在消融器加速和压缩的流体动力稳定性提高的条件下开始点火。外壳的内de- layer层的长宽比不超过15,前提是外层(塑料烧蚀剂)的主要部分(大于75%)在最大压缩瞬间蒸发掉。该研究基于使用一维(1D)流体动力代码执行的两个系列数值计算。第一个一维代码用于计算轮廓激光辐射脉冲的吸收(包括计算总吸收系数,并考虑到反向致辐射和共振机制)以及使用192的实际辐射几何形状的目标加热的空间分布立方八面体对称聚焦方案中的激光束。第二个1D代码用于模拟在吸收的激光辐射的作用下目标演化的总周期,并确定使用给定目标获得的热核增益。

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