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Vector-based synthesis of finite aperiodic diffractive micro-optical elements with subwavelength structures as beam deflectors

机译:基于矢量的合成有限的非周期性衍射微光学元件,子波长结构作为光束偏转器

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An iterative optimization-based synthesis algorithm has been presented for the design of diffractive micro-optical elements (DMOE's) with subwavelength structures as beam controllers. The DMOE's with subwavelength structures only require single step fabrication, but the subwavelength and aperiodic nature of the DMOE's prevent the use of scalar diffraction theory and the use of coupled-wave theory. We apply the finite-difference time-domain (FDTD) method as the vector model and the iterative plane wave spectrum algorithm (IPWS) as the synthesis algorithm, which can make the design of DMOE's in reasonable time frames. The IPWS, the FDTD method, the plane wave spectrum propagation method have been discussed and a beam deflector with subwavelength structures has been designed.
机译:已经提出了一种基于迭代优化的合成算法,用于衍射微光学元件(DMOE)的衍射微光学元件(DMOE)作为光束控制器的设计。 DMOE具有亚波长结构仅需要单步制造,但DMOE的亚波长和非周期性性质防止使用标量衍射理论和耦合波理论的使用。我们将有限差分时域(FDTD)方法应用为向量模型和迭代平面波谱算法(IPW)作为合成算法,可以使DMOE的设计在合理的时间范围内。已经讨论了IPW,FDTD方法,平面波谱传播方法,并且已经设计了具有子波长结构的光束偏转器。

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