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Confinement in a planar waveguide with porous silicon omnidirectional mirrors as confining walls

机译:用多孔硅全向反射镜作为围墙限制在平面波导中

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We present the design and study of waveguide structures based on porous silicon where the light confinement is not due to the usual total reflection effect but to the use of photonic crystals (PCs) as confining walls. These PC are omnidirectional mirrors (OMs), consisting of the periodic repetition of two porous silicon layers with different refractive indices and thicknesses. They reflect the radiation for all angles of incidence within a frequency range called the omnidirectional band gap (OBG). We have followed the PC formalism to investigate the properties of the OM as a multimode waveguide: the number of modes within the band gap, their field spatial distribution and their confinement as a function of the frequency and the core thickness. (c) 2006 Elsevier B.V. All rights reserved.
机译:我们介绍了基于多孔硅的波导结构的设计和研究,其中的光限制不是由于通常的全反射效应,而是由于使用光子晶体(PCs)作为限制壁。这些PC是全向反射镜(OM),由具有不同折射率和厚度的两个多孔硅层的周期性重复组成。它们在称为全向带隙(OBG)的频率范围内反射所有入射角的辐射。我们遵循PC形式主义来研究OM作为多模波导的特性:带隙内的模数,它们的场空间分布及其作为频率和纤芯厚度的函数的限制。 (c)2006 Elsevier B.V.保留所有权利。

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