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首页> 外文期刊>Optics Letters >Extraordinary refraction and dispersion in two-dimensional photonic-crystal slabs
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Extraordinary refraction and dispersion in two-dimensional photonic-crystal slabs

机译:二维光子晶体平板中的非寻常折射和色散

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摘要

Studies of the refraction and dispersion properties of two-dimensional (2D) photonic-crystal (PC) slab waveguides are reported. The photonic band structure is strongly modified in a slab PC, and only a small number of bands satisfy the guiding conditions imposed by the lack of translation symmetry in the direction perpendicular to the slab; however, it was found that a significant number of the guided modes retain the giant refraction and strong dispersion properties discovered previously in pure 2D PCs. A small change in incident angle resulted in a dramatic change in refraction angle. Furthermore, the dispersion surface exhibited a strong dependence on the frequency, resulting in a superprism effect similar to what has been predicted for pure 2D PCs. In the silicon-based slab PC studied, refraction angles as high as nearly 70° were predicted for incident angles of less than 7°, and frequency components differing by 3% were separated by 15°. The demonstration of giant refraction and superprism phenomena in slab waveguide PCs open the possibility of developing new classes of optical devices that can, for example, be used to develop 2D optical integrated circuits for communications and computing.
机译:报道了对二维(2D)光子晶体(PC)平板波导的折射和色散特性的研究。在平板PC中,光子的能带结构发生了很大的变化,只有很少的能带满足垂直于平板方向上缺乏平移对称性所施加的引导条件。但是,发现大量的引导模式保留了以前在纯2D PC中发现的巨大折射和强大的色散特性。入射角的微小变化导致折射角发生巨大变化。此外,色散表面表现出对频率的强烈依赖性,从而导致超棱镜效应,类似于对纯2D PC的预测。在所研究的硅基平板PC中,对于小于7°的入射角,可预测高达70°的折射角,而相差3%的频率分量将相隔15°。平板波导PC中巨大折射和超棱镜现象的演示为开发新型光学设备提供了可能性,这些光学设备可用于开发用于通信和计算的2D光学集成电路。

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