Experimental model of 3D volumetric display based on a stack of FLC light-scattering shutters

A. Andreev, Y. Bobylev, I. Kompanets, E. Pozhidaev, V. Shoshin, Yu. P. Shumkina, S. Torgova, A. Alyushin, M. Alyushin, S. Gonchukov, A. Strigazzi
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Abstract

3D display with a volumetric screen is developed because it composes the most realistic 3D image of 3D object or scene. The display experimental model using a stack of light-scattering shutters based on the ferroelectric LC layer was created for the first time. Physical mechanisms of FLC layer scattering were studied. The bistable scattering regime which is most appropriate for practical applications was found, and the total time of scattering switching on and switching off was less than 250μs at ± 80 V. The experiments showed that the possible number of FLC shutters in a volumetric screen of the real time 3D display can be as high as 30-100.
基于FLC光散射百叶窗堆叠的三维体显示实验模型
体屏三维显示技术的发展是由于它能构成最真实的三维物体或场景的三维图像。首次建立了基于铁电LC层的光散射百叶窗堆叠显示实验模型。研究了FLC层散射的物理机制。得到了最适合实际应用的双稳态散射区,在±80 V下,散射开关的总时间小于250μs。实验表明,在实时三维显示的体积屏幕中,FLC快门的可能数量可高达30-100个。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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