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Surface Modification of ICF Target Capsules by Pulsed Laser Ablation

机译:ICF靶胶囊的脉冲激光烧蚀表面改性

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Topographical modifications of spherical surfaces are imprinted on National Ignition Facility target capsules by extending the capabilities of a recently developed full-surface (4 pi) laser ablation and mapping apparatus. The laser ablation method combines the precision, energy density, and long reach of a focused laser beam to preimpose sinusoidal modulations on the outside surface of high-density carbon capsules and the inside surface of glow discharge polymer capsules. Sinusoidal modulations described in this paper have submicron to tens of microns vertical scale and wavelengths as small as 30 mu m and as large as 200 mu m. The modulated patterns are created by rastering a focused laser fired at discrete capsule surface locations for a specified number of pulses. The computer program developed to create these raster patterns uses inputs such as the laser beam intensity profile, the material removal function, the starting surface figure, and the desired surface figure. The patterns are optimized to minimize surface roughness. In this paper, simulated surfaces are compared with actual ablated surfaces measured using confocal microscopy.
机译:通过扩展最近开发的全表面(4 pi)激光烧蚀和标测设备的功能,球形表面的形貌修饰被印在国家点火设施目标胶囊上。激光烧蚀方法结合了聚焦激光束的精度,能量密度和远距离,以在高密度碳胶囊的外表面和辉光放电聚合物胶囊的内表面上施加正弦调制。本文中描述的正弦调制具有亚微米到数十微米的垂直尺度,并且波长小至30微米,大至200微米。通过光栅化在离散的胶囊表面位置发射指定数量的脉冲的聚焦激光来创建调制图案。为创建这些光栅图案而开发的计算机程序使用诸如激光束强度轮廓,材料去除功能,起始表面图形和所需表面图形之类的输入。优化图案以最小化表面粗糙度。在本文中,将模拟表面与使用共聚焦显微镜测量的实际烧蚀表面进行了比较。

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