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首页> 外文期刊>Optics Letters >Low-driving-voltage, polarizer-free, scattering-controllable liquid crystal device based on randomly patterned photo-alignment
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Low-driving-voltage, polarizer-free, scattering-controllable liquid crystal device based on randomly patterned photo-alignment

机译:基于随机图案的光对准的低驱动电压,无偏振器,无散射可控液晶装置

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摘要

In this work, a polarizer-free, electrically tunable liquid. crystal device is presented. This device is based on randomly patterned photo-aligned boundaries generating light scattering in an adjacent liquid crystal film. Its transparent on state requires only 7.5 V-rms driving voltage. Switching from a 49.5% hazy off state into the transparent on state occurs at 1.25 V, with only 1.2% residual haze. The effect exhibits fast rise and decay times of 0.3 ms and 7.2 ms, respectively. Thanks to its field-effect nature and the surface preparation process, zero ohmic low power consumption, fast response times, and steep transmission-voltage characteristics result. Applications are smart windows, light shutters, and/or transparent displays, as well as complementary metal-oxide-semiconductor driven multiplexed displays. (C) 2020 Optical Society of America
机译:在这项工作中,无偏振器,电可调谐液体。 提供了晶体装置。 该装置基于在相邻的液晶膜中产生光散射的随机图案化的光对准边界。 其透明状态仅需要7.5 V-RMS驱动电压。 从49.5%的朦胧关闭状态切换到透明状态下发生在1.25 V,只有1.2%的残余阴霾。 该效果分别表现出快速上升和衰减时间为0.3ms和7.2ms。 由于其现场效应性质和表面制备过程,零欧姆低功耗,快速响应时间和陡峭的传输 - 电压特性结果。 应用是智能窗户,灯光百叶窗和/或透明显示器,以及互补的金属氧化物半导体驱动多路复用显示器。 (c)2020美国光学学会

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