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Nanocrystals in the manufacture of target for inertial confinement fusion

机译:惯性约束聚变靶材制造中的纳米晶体

摘要

Systems inertial confinement fusion (ICF) need of a manufacturing process targets very accurate and efficient (Fig. A). Due to the frequency needed for energy production techniques are necessary to achieve high repetition rates, however it is also necessary to increase or maintain the quality and efficiency of these targets. In order to observe more resolution possible problems in the target manufacture (B), we propose the following theoretical methodology, by means of which analyze different phenomena present in the conditions which are fabrication and handled deuterium tritium target spheres (DT ice). Recent experiments show that addition of instabilities caused by the geometry of the solid layer of DT ice (C), and the cover (ablator), one can relate the loss of power delivery in the implosion due to different conformations of the solid layers with regarding handling conditions.
机译:系统惯性约束融合(ICF)对制造过程的需求非常精确和有效(图A)。由于能量生产技术所需的频率对于实现高重复率是必需的,但是,也有必要提高或保持这些目标的质量和效率。为了观察目标制造商(B)中可能解决的更多问题,我们提出以下理论方法,通过该方法论,分析了制造和处理氘de目标球体(DT冰)条件下存在的不同现象。最近的实验表明,由DT冰(C)固体层和覆盖层(消融层)的几何形状引起的不稳定性的增加,可以将由于固体层结构不同而引起的内爆动力传递损失与处理条件。

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