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Continuous-phase diffractive optical element to realize uniform target illumination in inertial confinement fusion (ICF)

机译:连续相衍射光学元件实现惯性监控融合中的均匀目标照明(ICF)

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Rigorous requirements of target illumination are requested in Inertial Confinement Fusion (ICF) experiments, such as flat top, steep edge, low sidelobes and high light efficiency. Using Diffractive Optical Elements (DOEs) to realize such uniform illumination has many advantages, such as high light efficiency of pure phase modulation, strong flexibility of phase design and so on. A kind of hybrid algorithm based on hill-climbing and simulated annealing is utilized for phase design because of the ability of strong convergence of the hill-climbing and the global optimization potential of the simulated annealing. Continuous phase should be adopted to increase the light efficiency and decrease wide-angle scattering. The continuous phase DOEs with diameter 100 mm has been obtained by gray-level mask and ion-etching on the K9- glass substrate. The DOEs' interferogram and local profiles are given to detect the precision of manufacturing. The intensity distribution of the focal spot are measured by a general CCD, and a series of attenuators are used to increase the dynamic range of the CCD. The results after data- processing show that the uniform illumination has been obtained.
机译:在惯性监禁融合(ICF)实验中请求对目标照明的严格要求,例如平顶,陡峭的边缘,低侧滑和高光效率。使用衍射光学元件(确实)实现这种均匀照明具有许多优点,例如纯相位调制的高光效率,相位设计的强柔韧性等。一种基于山坡和模拟退火的一种混合算法,用于相位设计,因为爬山山攀爬的能力和模拟退火的全球优化潜力的能力。应采用连续阶段来提高光效率,降低广角散射。通过灰度掩模和K9-玻璃基板上的离子蚀刻获得直径为100mm的连续相。对干涉图和本地简档进行了检测制造的精度。焦斑的强度分布通过一般CCD测量,并且使用一系列衰减器来增加CCD的动态范围。数据处理后的结果表明已经获得了均匀的照明。

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