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Stray light and tolerance analysis of an ultrathin waveguide display

机译:超薄波导显示器的杂散光和公差分析

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Waveguides are becoming increasingly popular in the field of near-eye display because of their low thickness and light weight. However, ghost stray light generated in the waveguide and the double-image problem caused by low parallelism precision seriously degrade the display quality. In this study, the causes of stray light are investigated, an effective solution is proposed, and a coupling-in structure is designed to suppress stray light. The Monte Carlo tolerances on the parallelism errors based on the visual acuity for the two substrates and the partially reflective mirror array (PRMA) of the waveguide are implemented. Results show that the fabrication accuracy of the substrates and the PRMA should be controlled within 6 '' and 9 '', respectively. A 2.4 mm thick waveguide with stray light of less than 1% is designed. The field of view is 36 degrees in the pupil-expanding direction, and the diameter of the exit pupil is 11.6 mm at an eye relief of 20 mm. Finally, a proof-of-concept prototype is fabricated and demonstrated. (C) 2015 Optical Society of America
机译:由于波导的低厚度和轻重量,它们在近眼显示领域变得越来越流行。然而,在波导中产生的幻影杂散光和由低平行度精度引起的双图像问题严重降低了显示质量。在这项研究中,研究了杂散光的原因,提出了有效的解决方案,并设计了一种耦合输入结构来抑制杂散光。实现了基于两个基板的视敏度和波导的部分反射镜阵列(PRMA)的平行度误差的蒙特卡罗公差。结果表明,基板和PRMA的制造精度应分别控制在6英寸和9英寸之间。设计了2.4 mm厚的波导,其杂散光小于1%。视场在瞳孔扩展方向上为36度,出瞳的直径在20毫米的眼睛缓解时为11.6毫米。最后,制作并演示了概念验证原型。 (C)2015年美国眼镜学会

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