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Influence of specularly reflected laser light on uniformity of implosion of indirect-drive fusion capsule

机译:镜面反射激光对间接驱动聚变胶囊内爆均匀性的影响

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摘要

The influence of laser light components specularly reflected by the inner wall of an x-ray confining cavity was experimentally investigated by means of time-resolved x-ray imaging and shock wave measurements. The experiments were made for two different cavity shapes (circular and decagonal cylinders) to investigate the geometrical effect of the reflected light. The results were compared with calculations involving a simple illumination code. Time-resolved x-ray images for a gold-coated surrogate sphere at the cavity centre were replicated by the calculations, showing that the reflected light shines strongly on the sphere at the beginning of the laser pulse. It was also found that, for the experimental conditions adopted in this study, about one third of the drive pressure of a shock wave propagating through a planar sample placed at the cavity centre is due to the reflected light. The estimated intensity of the reflected light is high enough to impose noticeable imprinting onto a fusion capsule set in the vacuum cavity conventionally used for indirect-drive implosions. [References: 14]
机译:通过时间分辨X射线成像和冲击波测量,通过实验研究了X射线限制腔内壁镜面反射的激光成分的影响。对两种不同的腔体形状(圆形和十边形圆柱体)进行了实验,以研究反射光的几何效应。将结果与涉及简单照明代码的计算进行了比较。通过计算复制了位于腔中心的镀金替代球的时间分辨x射线图像,表明在激光脉冲开始时,反射光强烈照射到球体上。还发现,对于本研究采用的实验条件,通过放置在腔体中心的平面样品传播的冲击波的驱动压力中,约有三分之一是由于反射光引起的。反射光的估计强度足够高,可以在通常用于间接驱动内爆的真空腔中的融合胶囊上施加明显的烙印。 [参考:14]

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