Mattelin Marie-Aline, Radosavljevic Ana, Missinne Jeroen, Cuypers Dieter, Van Steenberge Geert
Opt Express. 2020 Apr 13;28(8):11175-11190. doi: 10.1364/OE.384806.
In a waveguide-type display for augmented reality, the image is injected in the waveguide and extracted in front of the eye appearing superimposed on the real-world scene. An elegant and compact way of coupling these images in and out is by using blazed gratings, which can achieve high diffraction efficiencies. We report the design of blazed gratings for green light (λ = 543 nm) and a diffraction angle of 43°. The blazed gratings with a pitch of 508 nm and a fill factor of 0.66 are fabricated using grayscale electron beam lithography. We outline the subsequent replication in a polymer waveguide material with ultraviolet nanoimprint lithography and confirm a throughput efficiency of 17.4%. We finally show the in- and outcoupling of an image through two blazed gratings appearing sharp and non-distorted in the environment.
在用于增强现实的波导型显示器中,图像被注入到波导中,并在眼睛前方提取,从而叠加在现实世界场景上。一种优雅且紧凑的将这些图像耦合进出的方法是使用闪耀光栅,其可实现高衍射效率。我们报告了用于绿光(λ = 543 nm)且衍射角为43°的闪耀光栅的设计。采用灰度电子束光刻制造了间距为508 nm且填充因子为0.66的闪耀光栅。我们概述了随后使用紫外纳米压印光刻在聚合物波导材料中的复制,并确认了17.4%的通量效率。我们最终展示了通过两个闪耀光栅实现的图像耦合进出,在环境中呈现出清晰且无失真的效果。