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Metasurface-based compact light engine for AR headsets

机译:用于AR耳机的MEDasurface的紧凑型灯引擎

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Despite the great advances, potentials of augmented reality to fundamentally transform the way people use computers is partially hindered by the size and weight of the AR headsets. In waveguide-based devices, the light engine constitutes a significant portion of the total volume and weight. Dielectric metasurfaces have in recent years been used to demonstrate various high performance optical elements like blazed gratings and wide field of view lenses with small thicknesses, high efficiencies, and little stray light. Here, we report our work on the design of a compact light engine based on multi-metasurface optics with wide fields of view, integrated with three monochrome μ-LED displays for red, green, and blue. The metasurfaces image the μ-LEDs on the prism or grating couplers. This design avoids an important shortcoming of μ-LEDs and metasurface lenses, i.e., each work well for a single wavelength. As an example, we present a design for 532 nm, with over 3000 resolved angular points in an 8-mm-diameter field of view, and a total volume less than 0.65 cc (<2 cc for the three wavelengths). Limited by the total internal reflection region inside a waveguide with a 1.78 refractive index, the light engine can produce an image with over 1500×1500 points over a field of view slightly larger than 85°×85° in air. To the best of our knowledge, this is the first proposal and demonstration of such a system and therefore opens the path towards exploring the potentials of the metasurface diffractive optics technology for compact AR headsets with enhanced optical capabilities.
机译:尽管有很大的进展,但增强现实的潜力从根本上改变人们使用计算机的方式被AR耳机的大小和重量部分阻碍。在基于波导的装置中,光发动机构成总体积和重量的重要部分。近年来介电元措施已经过去已被用于展示各种高性能光学元件,如炽热的光栅和宽度的视野,具有小的厚度,高效率和小杂散光。在这里,我们在基于多元表面光学器件的基础上,通过具有广泛的视野来报告我们的工作,与三种单色μ-LED显示器集成为红色,绿色和蓝色。 Metasurfaces在棱镜或光栅耦合器上映像μ导光。这种设计避免了μ导光和元表面镜头的重要缺点,即,每个都适用于单波长。作为示例,我们呈现532nm的设计,具有超过3000个分辨的角点,在8 mm直径的视场中,总体积小于0.65cc(三个波长<2 cc)。通过用1.78的折射率的波导内的全内反射区限定,所述光引擎可产生具有超过1500×1500点的图像在视场略大于85°×85°的空气。据我们所知,这是这种系统的第一个提案和演示,因此开辟了具有增强的光学能力的紧凑型AR耳机的Metasurface衍射光学技术的潜力。

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