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Design of optical notch filters using apodized thickness modulation

机译:采用变迹厚度调制的陷波滤波器设计

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摘要

An apodized thickness design method for discrete layer notch filters is presented. The method produces error tolerant designs with low ripple in the passband regions without any additional numerical optimization. Several apodization functions including Gaussian, cosine squared, as well as quintic are considered. Theoretical and experimental results from ion beam deposited sample designs for single-notch as well as multinotch filters are presented. Good agreement is observed between the theoretical design and the experimental measurement even when the deposition process is only controlled on time. This demonstrates the low layer error sensitivity of the apodized designs.
机译:提出了一种用于离散层陷波滤波器的变迹厚度设计方法。该方法可在通带区域中产生具有低纹波的容错设计,而无需任何其他数值优化。考虑了几种变迹功能,包括高斯,余弦平方和五次方。给出了用于单陷波和多陷波滤波器的离子束沉积样品设计的理论和实验结果。即使仅按时控制沉积过程,在理论设计和实验测量之间也可以观察到良好的一致性。这证明了切趾设计的低层误差敏感性。

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