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Diffractive projection displays

机译:衍射投影显示

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Abstract: Displays based on diffraction effects can provide very high lumen output at high contrast ratio, due to the absence of polarizers, low losses, large-area light valves, and bright light sources. The electron-beam addressed oil-film diffracting light valve employed by the Eidophor is an expensive technology. Recent developments in diffraction form liquid-crystal devices, micromechanical gratings, and elastomeric deformation, could result in a low-cost high- efficiency projector. Therefore, it is of interest to examine the performance limitations of diffractive systems in general, and in relation to other systems. The throughput efficiency of a projector is related to the light source collimation required to transmit light through the limiting apertures of the system. A diffractive device expands the optical divergence, and consequently sacrifices system optical throughput. If the source collimation is increased by the availability of short-arc lamps, or laser diodes, the diffractive throughput penalty is reduced or eliminated. The performance of micromechanical and liquid-crystal diffractive structures is analyzed using a realistic arc lamp model. Theoretical limitations on projector throughput and contrast ratio are derived for diffractive systems, and compared with polarization dependent liquid crystal systems. !17
机译:摘要:由于没有偏振片,低损耗,大面积的光阀和明亮的光源,基于衍射效应的显示器可以在高对比度下提供非常高的流明输出。 Eidophor使用的电子束寻址油膜衍射光阀是一项昂贵的技术。衍射形式的液晶装置,微机械光栅和弹性体变形的最新发展可能会导致低成本,高效率的投影仪。因此,感兴趣的是通常检查衍射系统以及相对于其他系统的性能限制。投影仪的生产效率与将光传输通过系统的限制孔所需的光源准直有关。衍射装置扩大了光的发散度,因此牺牲了系统的光通量。如果通过使用短弧灯或激光二极管来提高光源准直度,则可以减少或消除衍射通量损失。使用实际的弧光灯模型分析了微机械和液晶衍射结构的性能。对于衍射系统,推导了投影仪吞吐量和对比度的理论限制,并将其与偏振相关的液晶系统进行了比较。 !17

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