Liu J S, Taghizadeh M R
Opt Lett. 2002 Aug 15;27(16):1463-5. doi: 10.1364/ol.27.001463.
An improved iterative algorithm for designing diffractive phase elements for laser beam shaping in free space is presented. The algorithm begins with the Gerchberg-Saxton approach to obtain a stable solution. This is followed by several new iterations, in which modified constraining functions are imposed in the Fourier domain while the phase distribution of each iteration remains unchanged. For super-Gaussian beam shaping suitable for inertial confinement fusion applications the mean-square errors of the amplitude and the intensity profile of the entire beam fitted to the corresponding parameters of the 12th-power super-Gaussian beam are approximately 0.035 and 9.75x10(-3), respectively. Approximately 97.4% of the incident energy is converged into the desired region.
提出了一种用于设计自由空间中激光束整形衍射相位元件的改进迭代算法。该算法从Gerchberg-Saxton方法开始以获得稳定解。随后进行几次新的迭代,其中在傅里叶域中施加修改后的约束函数,而每次迭代的相位分布保持不变。对于适用于惯性约束聚变应用的超高斯光束整形,拟合到十二次方超高斯光束相应参数的整个光束的振幅和强度分布的均方误差分别约为0.035和9.75×10⁻³。大约97.4%的入射能量汇聚到所需区域。