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首页> 外文期刊>Physical Review, B. Condensed Matter >Numerical studies of mode gaps and coupling efficiency for line-defect waveguides in two-dimensional photonic crystals - art. no. 155113
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Numerical studies of mode gaps and coupling efficiency for line-defect waveguides in two-dimensional photonic crystals - art. no. 155113

机译:二维光子晶体中线缺陷波导的模隙和耦合效率的数值研究-艺术没有。 155113

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摘要

Using conventional waveguides. for light coupling and collection we numerically study band structures and transmission spectra for guided modes in line-defect waveguides. obtained by removing rows of air holes in a lossless triangular-lattice two-dimensional photonic crystal. The two-dimensional finite-difference time-domain method combined with the effective index method and complemented with the coupled mode approximation is employed to analyze mode-gaps (or mini stopbands) arising from Bragg diffraction of the incident mode into the counterpropagating modes. We also show that more than 97% coupling efficiency between the ridge and the photonic crystal waveguides. is achievable by adjustment of the ridge waveguide width. [References: 28]
机译:使用常规波导。对于光耦合和收集,我们通过数值研究线缺陷波导中导模的能带结构和透射谱。通过去除无损三角形晶格二维光子晶体中的气孔行获得。将二维有限差分时域方法与有效折射率方法相结合,并辅以耦合模式逼近,来分析由入射模式的布拉格衍射到反向传播模式引起的模式间隙(或最小阻带)。我们还表明,脊和光子晶体波导之间的耦合效率超过97%。通过调节脊形波导的宽度可以实现。 [参考:28]

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