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Spectral engineering of lithographically scribed channel waveguide gratings

机译:光谱划线通道波导光栅的光谱工程

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We propose and demonstrate a powerful new approach to spectral bandpass engineering (apodization) of one-dimensional channel-waveguide Bragg reflectors. Bandpass engineering is accomplished via precise photolithographic control over the transverse width and longitudinal placement of individual grating lines which, respectively, provide unique line-by-line diffractive amplitude and phase control. Several channel waveguide gratings exhibiting complex filtering functions based on the present apodization method have been fabricated and modeled. They include an essentially polarization -insensitive 4-nm wide flat-top filter with steep roll-off and a multi-passband spectral decoder, useful, e.g., for optical spectral code-division multiplexing or spectral signature recognition. When a second-order apodization effect, comprising effective waveguide refractive index variation with grating-line transverse width, is included in the simulation, extraordinary agreement between predicted and observed spectral passband profiles is obtained.
机译:我们提出并展示了一维通道 - 波导布拉格反射器的光谱带通工程(叠加)的强大新方法。通过精确的光刻控制在各个光栅管线的横向宽度和纵向放置上通过精确的光刻控制完成带通工程,其分别提供独特的逐行衍射幅度和相位控制。已经制造和建模了基于本发明的涂覆方法的复杂过滤功能的几个通道波导光栅。它们包括基本上偏振 - 敏感的4-NM宽平顶过滤器,具有陡峭的滚动和多通带光谱解码器,有用,例如,用于光谱码分复用或光谱特征识别。当包括用光栅线横向宽度的有效波导折射率变化的二阶减少效果包括在模拟中,获得预测和观察的光谱通带之间的非凡协议。

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