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THREE-DIMENSIONAL CHARACTERIZATION OF CRYOGENIC TARGET ICE LAYERS USING MULTIPLE SHADOWGRAPH VIEWS

机译:多重阴影视图在低温目标冰层的三维表征中的应用

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Backlit optical shadowgraphy is the primary diagnostic for D_2 ice layer characterization of cryogenic targets for the OMEGA Laser System at the Laboratory for Laser Energetics (LLE). Reflection and refraction of light passing through the ice layer produce characteristic rings. The position of the most prominent of the shadowgraph rings, known as the bright ring, can be resolved to ~0.1-pixel rms, corresponding to about 0.12 μm for typical LLE target shadowgraphs. Measurement of the bright ring position in conjunction with ray-trace model predictions determines the ice layer thickness and the Fourier-mode spectrum of the ice roughness for that view. The LLE target characterization stations use two camera angles and target rotation to record target shadowgraphs from many different views. Combining these views allows construction of a 3-D ice layer representation, an estimation of the global surface roughness, and a determination of a Legendre-mode spectrum suitable for implosion modeling. The standard operating procedure is to construct a 3-D ice layer representation using the analysis of 48 separate shadowgraphic views. The 3-D ice surface is then decomposed in terms of spherical harmonics, allowing the determination of low-mode number (l ≤ 8 to 10) elements of a Legendre-mode power spectrum. Higher-mode number elements of the Legendre power spectrum are determined by mapping the Fourier-mode power spectrum averaged over all views.
机译:背光光学阴影照相术是激光能量学实验室(LLE)用于OMEGA激光系统的低温目标的D_2冰层表征的主要诊断。穿过冰层的光的反射和折射会产生特征性的环。阴影图环中最突出的环(称为亮环)的位置可以解析为〜0.1像素rms,相当于典型的LLE目标阴影图的约0.12μm。亮圈位置的测量与射线轨迹模型预测一起确定该视图的冰层厚度和冰粗糙度的傅里叶模式光谱。 LLE目标表征站使用两个摄像机角度和目标旋转来从许多不同的角度记录目标阴影图。合并这些视图可以构建3-D冰层表示形式,估计整体表面粗糙度并确定适用于内爆建模的Legendre模式光谱。标准操作程序是使用48个单独的阴影视图分析来构建3-D冰层表示。然后,根据球谐函数分解3-D冰面,从而可以确定勒让德模式功率谱的低模数(l≤8至10)元素。勒让德功率谱的高模数元素是通过映射在所有视图上平均的傅里叶模式功率谱来确定的。

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