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THREE-DIMENSIONAL CHARACTERIZATION OF SPHERICAL CRYOGENIC TARGETS USING RAY-TRACE ANALYSIS OF MULTIPLE SHADOWGRAPH VIEWS

机译:利用多阴影视图的射线轨迹分析对球面低温目标进行三维表征

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Backlit optical shadowgraphy is the primary diagnostic for hydrogenic ice-layer characterization in cryogenic targets at the Laboratory for Laser Energetics (LLE). Reflection and refraction of light passing through the ice layer produce characteristic rings on the image. 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 less than 0.2 μm for typical target shadowgraphs. The LLE target characterization stations use two camera angles and target rotation to record target shadowgraphs from many different views (typically 48) and build a three-dimensional (3-D) topology of the ice layer. The standard method of bright-ring analysis using spherically symmetric ray-trace calculations to determine the ice surface is limited to mode numbers up to around l_(max) = 10 by gaps in the data and the effects of ice-layer asymmetries that invalidate the symmetric ray trace calculations. A 3-D ray-tracing model has been incorporated into the shadowgraph analysis. The result is a self-consistent determination of the hydrogen/vapor surface structure for cryogenic targets up to higher-mode numbers (l_(max) = 16). This reduces the standard deviation between the measured bright rings and those predicted for the 3-D ice surface (by 45% from 1.5 μm to 0.8 μm in the example shown).
机译:背光光学阴影照相术是激光能量学实验室(LLE)进行低温目标氢冰层表征的主要诊断方法。穿过冰层的光的反射和折射会在图像上产生特征环。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,相当于典型目标阴影图的小于0.2μm。 LLE目标表征站使用两个摄像机角度和目标旋转来记录来自许多不同视图(通常为48个)的目标阴影图,并构建冰层的三维(3-D)拓扑。使用球形对称射线迹线计算来确定冰面的亮环分析的标准方法受数据间隙和使冰层无效的冰层不对称性的影响限制在模数最多达到l_(max)= 10左右。对称光线轨迹计算。 3D射线跟踪模型已被纳入阴影图分析中。结果是对直至更高模数(l_(max)= 16)的低温目标的氢/蒸气表面结构进行了自洽的确定。这样可以减少测得的亮环与为3-D冰面预测的亮环之间的标准偏差(在所示示例中,从1.5μm降低到0.8μm减少45%)。

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