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Spectral tuning of a three-dimensional photonic-bandgap waveguide signature by silica atomic-layer deposition

机译:二氧化硅原子层沉积对三维光子带隙波导签名的光谱调谐

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摘要

Recent progress in three-dimensional sub-micron fabrication has rendered the introduction of waveguide structures into optical three-dimensional photonic bandgap materials possible. However, spectral tuning of the waveguide modes has not been demonstrated so far. Here, we use atomic-layer deposition of amorphous silica to tune the spectral position of an air-core defect waveguide in a three-dimensional silicon woodpile photonic crystal by 225 nm in wavelength. The measured spectral positions of the waveguide signature are in very good agreement with numerical calculations.
机译:三维亚微米制造的最新进展使得将波导结构引入光学三维光子带隙材料成为可能。但是,到目前为止,尚未证明波导模式的光谱调谐。在这里,我们使用无定形二氧化硅的原子层沉积来调整225mm三维硅木桩光子晶体中空芯缺陷波导的光谱位置。波导特征的测量光谱位置与数值计算非常吻合。

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