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Mapping the optical properties of slab-type two-dimensional photonic crystal waveguides

机译:绘制平板型二维光子晶体波导的光学特性

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摘要

We report on systematic experimental mapping of the transmission properties of two-dimensional silicon-on-insulator photonic crystal waveguides for a broad range of hole radii, slab thicknesses and waveguide lengths for both TE and TM polarizations. Detailed analysis of numerous spectral features allows a direct comparison of experimental data with 3D plane wave and finite-difference time-domain calculations. We find, counter-intuitively, that the bandwidth for low-loss propagation completely vanishes for structural parameters where the photonic band gap is maximized. Our results demonstrate that, in order to maximize the bandwidth of low-loss waveguiding, the hole radius must be significantly reduced. While the photonic band gap considerably narrows, the bandwidth of low-loss propagation in PhC waveguides is increased up to 125nm with losses as low as 8$\pm$2dB/cm.
机译:我们报告了二维绝缘体上硅光子晶体波导的传输特性的系统实验映射,该波导特性适用于TE和TM极化的宽范围的孔半径,平板厚度和波导长度。大量频谱特征的详细分析允许将实验数据与3D平面波和有限差分时域计算进行直接比较。与直觉相反,我们发现低损耗传播的带宽对于光子带隙最大的结构参数完全消失了。我们的结果表明,为了最大化低损耗波导的带宽,必须显着减小孔半径。尽管光子带隙明显变窄,但PhC波导中低损耗传播的带宽增加到125nm,损耗低至8 $ \ pm $ 2dB / cm。

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