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Analysis of the diffraction efficiency of reflection and transmission holographic gratings by means of a parallel FDTD approach

机译:反射和透射全息光栅的衍射效率的并行FDTD分析

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摘要

In this work a vectorized and parallel version of the Finite-Difference Time-Domain method (FDTD) is applied to Volume Holographic Gratings (VHG) and Thin-Film Filters (TFF). In particular, in this work gratings with a grating period vector forming an arbitrary angle with the perpendicular to the plane of incidence are analyzed. Angular and wavelength selectivity are obtained by means of the normalized diffraction efficiency. These parameters are positively compared with experimental values and also with analytical closed expressions, thus validating our method. Furthermore, analysis of the performance of the parallel method is shown obtaining a severe improvement with respect to the classical version of the FDTD method. This improvement of the algorithm provides a feasible and accurate scheme for simulating a wide range of optical devices.
机译:在这项工作中,有限差分时域方法(FDTD)的矢量化和并行版本应用于体积全息光栅(VHG)和薄膜滤光片(TFF)。特别地,在该工作中,分析了具有与入射平面的垂直线成任意角度的光栅周期矢量的光栅。角和波长选择性是通过归一化衍射效率获得的。将这些参数与实验值以及解析闭合表达式进行正比较,从而验证了我们的方法。此外,显示出对并行方法性能的分析相对于FDTD方法的经典版本获得了重大改进。该算法的改进为模拟各种光学设备提供了一种可行且准确的方案。

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