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Beaming effect and directional emission from photonic-crystal waveguides

机译:光子晶体波导的光束效应和定向发射

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It is known that free-space focusing of light from sub-wavelength apertures, the so-called beaming effect of light, can be achieved through the excitation of radiative surface modes and their subsequent constructive interference in space surrounding the apertures. This effect, studied extensively in metallic thin films, has recently been shown to exist in photonic-crystal structures. In this paper, we present a comprehensive study of the beaming effect and light directional emission achieved through simple geometric and material engineering of the surface and near-surface structures in two types of photonic-crystal waveguides, classified as increased- and decreased-index structures. We analyze different methods to enhance the directional emission and calculate the resulting efficiencies, highlighting the influence of reflections and matching conditions at the waveguide terminations.
机译:众所周知,可以通过激发辐射表面模式及其随后对孔周围空间的相长干涉来实现来自亚波长孔的光的自由空间聚焦,即所谓的光的束效应。在金属薄膜中进行了广泛研究的这种效应最近被证明存在于光子晶体结构中。在本文中,我们对通过简单的几何和材料工程对两种类型的光子晶体波导中的表面和近表面结构进行简单的几何和材料工程处理而获得的光束效应和光定向发射进行了全面研究,归类为高折射率和低折射率结构。我们分析了各种不同的方法来增强定向发射并计算出效率,重点介绍了波导终端处反射和匹配条件的影响。

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