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Russian megajoule laser facility Iskra-6. Creation, investigation and parameter optimization of basic module Luch

机译:俄罗斯梅格乐激光设施iskra-6。基本模块LUCH的创建,调查和参数优化

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At present there are two main problems in the ICF program. The first one is to define laser facility parameters and target design which can provide thermonuclear ignition. The second problem is to create such a facility with compact architecture and reasonable cost. The facilities existing at the national laboratories over the world cannot answer the first question. The reason is a too low level of laser energy. These facilities provide investigators with experimental data that serve for verification of the basic theoretical models for numerical simulations of thermonuclear targets. Figure 1 presents results of the study of the direct drive target compression using one-dimensional code SNDP. These calculations show that a polymeric target could be ignited by the tailored laser pulse of the energy of 500 kJ at the wavelength of 0.35 μm. Gain factor in calculations is G = 10 at the initial target radius of 1.5 mm, polymeric shell thickness of 33 μm and DT-ice thickness of 23 μm. The essential fact is that volumetric compression necessary to achieve ignition is about 10~4.
机译:目前ICF计划中有两个主要问题。第一个是定义激光设施参数和目标设计,可以提供热核点火。第二个问题是以紧凑的架构和合理的成本创造这样的设施。世界上全国实验室现有的设施无法回答第一个问题。原因是激光能量过低。这些设施提供了具有实验数据的调查员,用于验证热核靶标数模拟的基本理论模型。图1显示了使用一维码SNDP的直接驱动目标压缩研究的结果。这些计算表明,聚合物靶可以通过500kj的量为0.35μm的500kj的量度的激光脉冲点燃。计算中的增益因子在1.5mm的初始目标半径,聚合物壳厚度为33μm,dt - 冰厚度为23μm。基本事实是实现点火所需的体积压缩约为10〜4。

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