Liang Chuanyang, Zhang Wei, Rui Dawei, Sui Yongxin, Yang Huaijiang
Appl Opt. 2017 Apr 1;56(10):2810-2815. doi: 10.1364/AO.56.002810.
Lasers have been regarded as the potential illumination source for next generation projectors. With the additional feature of coherency, diffractive optical elements (DOEs) become available in the illumination light path. DOEs in laser projection display systems add strong beam-shaping ability, good uniform performance and small size, which makes it is possible to realize efficient and uniform illumination on a spatial light modulator (SLM). Moreover, it is helpful for the simplification and compactness of illumination optics. This paper proposed what we believe is a novel RGB laser projection display illumination system based on a DOE, which used the DOE and optical path compensation system (OPCS) as the beam-shaping and relay system (BSRS), instead of a light pipe and relay lens group in the conventional laser projection display illumination system. We designed the DOE and established the simulation model of the illumination system. The simulation results show that the new illumination system is simple and compact, the illumination uniformity is more than 90%, the illumination efficiency of RGB illumination in BSRS is more than 75%, and the numerical aperture (NA) of the illumination beam is about 0.01.
激光已被视为下一代投影仪的潜在照明光源。由于具有相干性这一附加特性,衍射光学元件(DOE)可用于照明光路。激光投影显示系统中的DOE具有强大的光束整形能力、良好的均匀性和小尺寸,这使得在空间光调制器(SLM)上实现高效且均匀的照明成为可能。此外,它有助于简化照明光学系统并使其更紧凑。本文提出了一种我们认为基于DOE的新型RGB激光投影显示照明系统,该系统使用DOE和光路补偿系统(OPCS)作为光束整形和中继系统(BSRS),而不是传统激光投影显示照明系统中的光管和中继透镜组。我们设计了DOE并建立了照明系统的仿真模型。仿真结果表明,新的照明系统简单紧凑,照明均匀性超过90%,BSRS中RGB照明的照明效率超过75%,照明光束的数值孔径(NA)约为0.01。