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Indirect-drive noncryogenic double-shell ignition targets for the National Ignition Facility: Design and analysis

机译:国家点火设施的间接驱动非晶体双壳点火目标:设计与分析

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摘要

Analysis and design of indirect-drive National Ignition Facility double-shell targets with hohlraum temperatures of 200 eV and 250 eV are presented. The analysis of these targets includes the assessment of two-dimensional radiation asymmetry and nonlinear mix. Two-dimensional integrated hohlraum simulations indicate that the x-ray illumination can be adjusted to provide adequate symmetry control in hohlraums specially designed to have high laser-coupling efficiency [Suter et al., Phys. Plasmas 7, 2092 (2000)]. These simulations also reveal the need to diagnose and control localized 10?15 keV x-ray emission from the high-Z hohlraum wall because of strong absorption by the high-Z inner shell. Preliminary estimates of the degree of laser backscatter from an assortment of laser?plasma interactions suggest comparatively benign hohlraum conditions. The application of a variety of nonlinear mix models and phenomenological tools, including buoyancy-drag models, multimode simulations and fall-line optimization, indicates a possibility of achieving ignition, i.e., fusion yields greater than 1 MJ. Planned experiments on the Omega laser will test current understanding of high-energy radiation flux asymmetry and mix-induced yield degradation in double-shell targets.
机译:提出了间接驱动国家点火设施双壳目标的分析与设计200eV的HOHLRAUM温度和250 ev。对这些靶标的分析包括评估二维辐射不对称和非线性混合物。二维集成的Hohlraum模拟表明,可以调整X射线照明,以在专门设计为具有高激光耦合效率的Hohlraums中提供足够的对称性控制[Suter等,Phy。 Plasmas 7,2092(2000)]。这些模拟还揭示了由于高Z内壳的强烈吸收,因此需要诊断和控制来自高Z Hohlraum壁的局部10 kev X射线发射。各种激光器中激光反向散射程度的初步估计血浆相互作用表明了良性的HOHLRAUM条件。应用各种非线性混合模型和现象学工具,包括浮力阻力模型,多模仿真和倒下优化,表明了实现点火的可能性,即融合产量大于1 MJ。欧米茄激光的计划实验将测试当前对高能辐射助焊剂不对称性和混合诱导的双壳靶标的屈服劣化的理解。

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