周期线散射测量FDTD激励模型的比较

B. Salski, W. Gwarek, M. Celuch
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引用次数: 4

摘要

最初提出的周期波导结构复杂环路时域有限差分算法适用于散射测量应用。为此,提出了两种发射平面波照射和提取散射参数的机制。第一种是基于一个经典的连接面,但是施加在真实和想象的FDTD网格上,以产生单一的传播平面波。它与频域的远近变换联合运算。另一种机制采用了从微波电路分析中借鉴的波导模式模板和s参数提取程序的概念。这两种技术的结果是相互一致的,并且在简化的情况下也经过了严格的耦合波分析的验证。这两种技术都可以实现到其他周期时域有限差分公式中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of FDTD excitation models for scatterometry of periodic reticles
Complex looped FDTD algorithms originally proposed for periodic waveguiding structures are adapted for scatterometry applications. To this end, two mechanisms of launching the plane wave illumination and extracting the scattering parameters are proposed. The first one is based on a classical connecting surface, imposed however on both real and imaginary FDTD grids to generate a single propagating plane wave. It is operated jointly with the near-to-far transformation in the frequency domain. The other mechanism uses the concept of waveguide mode templates and S-parameter extraction procedures borrowed from microwave circuit analysis. Results from both techniques are mutually consistent, and have also been validated against the rigorous coupled wave analysis for simplified scenarios. Both techniques may be implemented into other periodic FDTD formulations.
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