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Design of binary optics composite array element for inertial confinement fusion (ICF) target uniform illumination

机译:惯性约束聚变(ICF)目标均匀照明的二元光学复合阵列元件设计

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Abstract: The research on Inertial Confinement Fusion (ICF) is very important in the field of Energy and National Defence. Rigorous requirements of target illumination are proposed in ICF experiments, such as flat top, steep edge, low sidelobes and high light efficiency. Such uniform illumination is also required in some other fields, for example, laser manufacturing. Using Binary Optical Elements to realize such uniform illumination has many advantages, such as high light efficiency owing to pure phase modulation, strong phase distribution design flexibility and so on. When ring laser input and conventional Binary Optical Element Array is adopted, the filling factor is only 63.7% and the light efficiency is very small. In this paper, to increase the filling factor and exploit the light energy sufficiently, a kind of binary optics composite array element, whose shape approximates to a circular by containing some series of square units with different sizes, is designed to realize the uniform illumination needed in ICF. This elements' filling factors are greater than 90% and their 2D light efficiencies are more than 83%. Two dimensions are converted to one dimension to simplify the design. Hybrid algorithm based on hill-climbing and simulated annealing is utilized for phase optimization. Simulated results show the validity of this kind of method.!7
机译:【摘要】惯性约束聚变(ICF)的研究在能源与国防领域具有重要意义。在ICF实验中提出了对目标照明的严格要求,例如平顶,陡峭边缘,低旁瓣和高光效率。在其他一些领域,例如激光制造中,也需要这种均匀的照明。使用二进制光学元件实现这种均匀照明具有许多优点,例如由于纯相位调制而具有高的光效率,强大的相位分布设计灵活性等。当采用环形激光输入和常规的二元光学元件阵列时,填充因子仅为63.7%,光效率非常小。为了增加填充因子并充分利用光能,设计了一种二进制光学复合阵列元件,通过包含一系列不同尺寸的正方形单元,使其形状近似为圆形,以实现所需的均匀照明。在ICF中。该元素的填充系数大于90%,其二维光效率大于83%。将二维转换为一维以简化设计。利用基于爬山和模拟退火的混合算法进行相位优化。仿真结果表明了该方法的有效性。7

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