搜索

x
中国物理学会期刊

实现光学变换的单个全息透镜的有效设计

CSTR: 32037.14.aps.35.235

THE EFFECTIVE DESIGN OF A SINGLE HOLOGRAPHIC LENS FOR REALIZING OPTICAL TRANSFORM

CSTR: 32037.14.aps.35.235
PDF
导出引用
  • 本文在一般情形(旁轴和非旁轴情形)下,讨论利用单个全息透镜所组成的光学系统实现任意给定的线性变换时全息透镜的有效设计,研究了确定全息透镜的振幅-相位分布的方程组在各种参数下的解,并讨论了该解对参数变化时的稳定性,在非旁轴情形下,同样存在着可资利用的解。以三种不同序的四维和八维的Walsh变换为例,具体地研究了各种参数,例如全息透镜与输入平面以及输出平面之间的距离、全息透镜的取样点数目等,对该系统所实现的变换与给定的变换之间逼近程度的影响,从而为设计切实可行的系统提供了有益的启示和多种选择参数的方式。

     

    For "the general eases (paraxial approximation and non-paraxial ease), the ways of effective design of optical system to be composed of a single mask for the purpose of realizing any given linear transform are presented. Tinder various manners of choice of parameters, the solutions of equations to determine the amplitude-phase distribution of mask are investigated, and the stability of solution is also discussed. Under non-paraxial case, the solutions available in real situation are also found. Applying 4- and 8-dimen-sion Walsh transforms in the three different orders as examples, we investigate the effects of various parameters, such as the spacings between input plane, mask and output plane, and the number of sampling points in mask, on ‘approach distance', which describes the degree of approach of the transform to be performed by the system to any given linear transform. It would provide a realizable way to choose the relevant parameters and an usuful enlightment in the real design of an optical system for realizing a given linear transform.

     

    目录

    /

    返回文章
    返回