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Power beam splitter based on photonic crystal row of holes and Brewster effect in SOI waveguides

机译:SOI波导中基于孔的光子晶体行和布鲁斯特效应的功率分束器

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This Letter presents a beam splitter in a silicon-on-insulator (SOI) ridge waveguide loaded by a photonic crystal row of holes close to the Brewster angle. The propagation of the fundamental guided mode in this structure has been examined by the three-dimensional finite-difference time-domain method. It is shown that a TE-polarized optical beam exhibits the Brewster effect at an incident angle of about 39 deg, giving a small splitting ratio (<0.04) in a wide spectral range for silica-filled holes with a typical diameter of 200 nm and a spacing of 300 nm. The row of holes close to the Brewster angle is the perspective to be used in developing complementary metal-oxide semiconductor-compatible tunable devices based on multireflector filtering technology.
机译:这封信提出了一种绝缘体上硅(SOI)脊形波导中的分束器,该波导中装有接近布鲁斯特角的光子晶体行。已经通过三维有限差分时域方法研究了该结构中基本导模的传播。结果表明,TE偏振光束在约39度的入射角处表现出布鲁斯特效应,对于典型直径为200 nm的石英填充孔在宽光谱范围内具有较小的分光比(<0.04)。间距为300 nm。接近布鲁斯特角的那排孔是用于开发基于多反射器滤波技术的互补金属氧化物半导体兼容可调器件的透视图。

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