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Spatial resolution effect of light coupling structures

机译:光耦合结构的空间分辨率效应

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The coupling of light between free space and thin film semiconductors is an essential requirement of modern optoelectronic technology. For monochromatic and single mode devices, high performance grating couplers have been developed that are well understood. For broadband and multimode devices, however, more complex structures, here referred to as “coupling surfaces”, are required, which are often difficult to realise technologically. We identify general design rules based on the Fourier properties of the coupling surface and show how they can be used to determine the spatial resolution required for the coupler’s fabrication. To our knowledge, this question has not been previously addressed, but it is important for the understanding of diffractive nanostructures and their technological realisation. We exemplify our insights with solar cells and UV photodetectors, where high-performance nanostructures that can be realised cost-effectively are essential.
机译:自由空间与薄膜半导体之间的光耦合是现代光电技术的基本要求。对于单色和单模设备,已经开发了众所周知的高性能光栅耦合器。然而,对于宽带和多模设备,需要更复杂的结构,这里称为“耦合表面”,这通常在技术上难以实现。我们根据耦合表面的傅立叶特性确定一般设计规则,并展示如何将其用于确定耦合器制造所需的空间分辨率。据我们所知,这个问题以前没有得到解决,但是对于理解衍射纳米结构及其技术实现而言很重要。我们以太阳能电池和紫外线光电探测器为例来说明我们的见识,在这些领域中,可以经济有效地实现的高性能纳米结构至关重要。

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