Tan X, Gu B Y, Yang G Z, Dong B Z
Appl Opt. 1995 Mar 10;34(8):1314-20. doi: 10.1364/AO.34.001314.
A design method based on the Yang-Gu algorithm [Appl. Opt. 33, 209 (1994)] is proposed for computing the phase distributions of an optical system composed of diffractive phase elements that achieve beam shaping with a high transfer efficiency in energy. Simulation computations are detailed for rotationally symmetric beam shaping in which a laser beam with a radially symmetric Gaussian intensity distribution is converted into a uniform beam with a circular region of support. To present a comparison of the efficiency and the performance of the designed diffractive phase elements by use of the geometrical transformation technique, the Gerchberg-Saxton algorithm and the Yang-Gu algorithm for beam shaping, we carry out in detail simulation calculations for a specific one-dimensional beam-shaping example.
提出了一种基于杨顾算法[《应用光学》33, 209 (1994)]的设计方法,用于计算由衍射相位元件组成的光学系统的相位分布,该系统能以高能量传输效率实现光束整形。详细介绍了旋转对称光束整形的模拟计算,即将具有径向对称高斯强度分布的激光束转换为具有圆形支撑区域的均匀光束。为了通过几何变换技术、用于光束整形的格尔奇贝格 - 萨克斯顿算法和杨顾算法对所设计的衍射相位元件的效率和性能进行比较,我们针对一个特定的一维光束整形示例进行了详细的模拟计算。