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Small-hole waveguides in silicon photonic crystal slabs: efficient use of the complete photonic bandgap

机译:硅光子晶体平板中的小孔波导:有效利用整个光子带隙

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We investigate photonic crystal waveguides that are formed by holes of reduced diameter within a hexagonal lattice of cylindrical airholes in thin freestanding silicon slabs. The waveguides operate in both an even-symmetry bandgap and a partial gap of odd-symmetry modes that form a complete two-dimensional bandgap under the light line. The operating frequency is tuned by the small-hole diameter to fit within the range ofboth bandgaps and to match a free-space wavelength of 1550 nm. Their narrow bandwidth and low group velocity of light propagation renders the waveguides useful as filters or sensing elements. Because of the strong dependence of the waveguide mode characteristics on structural changes, the highest-precision lithographic fabrication techniques must be applied.
机译:我们研究由薄的独立式硅平板中的圆柱形气孔的六角形格子内直径减小的孔形成的光子晶体波导。波导既在偶数对称带隙中工作,又在奇数对称模式的部分缝隙中工作,在光线下形成完整的二维带隙。通过小孔径调整工作频率,使其适合两个带隙范围,并与1550 nm的自由空间波长匹配。它们的窄带宽和低的光传播速度使波导可用作滤波器或传感元件。由于波导模式特性对结构变化的强烈依赖性,必须应用最高精度的光刻制造技术。

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