Yoo Chanhyung, Bang Kiseung, Jang Changwon, Kim Dongyeon, Lee Chang-Kun, Sung Geeyoung, Lee Hong-Seok, Lee Byoungho
Opt Lett. 2019 Apr 15;44(8):1920-1923. doi: 10.1364/OL.44.001920.
A waveguide near-eye display (NED) with a dual-focal plane using a polarization-dependent lens device is proposed. The novel optical device is composed of a geometric phase holographic lens, a wave plate, and a circular polarizer, which is operating as a concave lens or a see-through optical window, depending on the polarization state of the input beam. Such property and ultra-thinness of about 1.5 mm can be applied to a combiner-eyepiece lens for augmented reality. This optical device attached to the waveguide provides two depth planes with polarization multiplexing. We have demonstrated that our proof-of-concept system has image planes at infinity and 20 diopters. The devised system can be expected to offer a better immersive experience, compared to a NED system with a single-focal plane.
提出了一种使用偏振依赖透镜装置的双焦平面近眼显示波导(NED)。这种新型光学装置由几何相位全息透镜、波片和圆偏振器组成,根据输入光束的偏振状态,它可作为凹透镜或透视光学窗口。这种特性以及约1.5毫米的超薄厚度可应用于增强现实的组合目镜透镜。附着在波导上的这种光学装置通过偏振复用提供两个深度平面。我们已经证明,我们的概念验证系统在无穷远和20屈光度处有像平面。与单焦平面的NED系统相比,所设计的系统有望提供更好的沉浸式体验。