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Light manipulation with flat and conformal inhomogeneous dispersive impedance sheets: an efficient FDTD modeling

机译:使用平坦和共形的非均匀色散阻抗片进行光处理:有效的FDTD建模

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摘要

An efficient auxiliary differential equation method for incorporating 2D inhomogeneous dispersive impedance sheets in the finite-difference time-domain solver is presented. This unique proposed method can successfully solve optical problems of current interest involving 2D sheets. It eliminates the need for ultrafine meshing in the thickness direction, resulting in a significant reduction of computation time and memory requirements. We apply the method to characterize a novel broad-beam leaky-wave antenna created by cascading three sinusoidally modulated reactance surfaces and also to study the effect of curvature on the radiation characteristic of a conformal impedance sheet holographic antenna. Considerable improvement in the simulation time based on our technique in comparison with the traditional volumetric model is reported. Both applications are of great interest in the field of antennas and 2D sheets. (C) 2016 Optical Society of America
机译:提出了一种有效的辅助微分方程方法,该方法可以将二维非均匀色散阻抗片合并到有限差分时域求解器中。这种独特的建议方法可以成功解决当前涉及2D图纸的光学问题。它消除了在厚度方向上进行超细网格划分的需要,从而大大减少了计算时间和内存需求。我们应用该方法来表征通过级联三个正弦调制电抗面而创建的新型宽束漏波天线,并研究曲率对共形阻抗片全息天线辐射特性的影响。据报道,与传统的体积模型相比,基于我们的技术的仿真时间有了显着改善。两种应用在天线和2D图纸领域都引起了极大的兴趣。 (C)2016美国眼镜学会

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