Di Feng, Yingbai Yan, Guofan Jin, Qiaofeng Tan, Liu Haitao
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instruments, Tsinghua University, Beijing, 100084, China.
J Opt Soc Am A Opt Image Sci Vis. 2003 Sep;20(9):1739-46. doi: 10.1364/josaa.20.001739.
We propose a rigorous electromagnetic design of two-dimensional and finite-aperture diffractive optical elements (DOEs) that employs an effective iterative optimization algorithm in conjunction with a rigorous electromagnetic computational model: the finite-difference time-domain method. The iterative optimization process, the finite-difference time-domain method, and the angular spectrum propagation method are discussed in detail. Without any approximation based on the scalar theory, the algorithm can produce rigorous design results, both numerical and graphical, with fast convergence, reasonable computational cost, and good design quality. Using our iterative algorithm, we designed a diffractive cylindrical lens and a 1-to-2-beam fanner for normal-incidence TE-mode illumination, thus showing that the optimization algorithm is valid and competent for rigorously designing diffractive optical elements. Concerning the problem of fabrication, we also evaluated the performance of the DOE when the DOE profile is discrete.
我们提出了一种针对二维有限孔径衍射光学元件(DOE)的严格电磁设计方法,该方法采用有效的迭代优化算法,并结合严格的电磁计算模型:时域有限差分法。详细讨论了迭代优化过程、时域有限差分法和角谱传播方法。该算法无需基于标量理论的任何近似,能够以快速收敛、合理的计算成本和良好的设计质量,给出严格的数值和图形化设计结果。利用我们的迭代算法,针对正入射TE模照明设计了一个衍射柱面透镜和一个1到2光束扇形器,从而表明该优化算法对于严格设计衍射光学元件是有效且适用的。关于制造问题,我们还评估了DOE轮廓离散时DOE的性能。