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POLYMER-DISPERSED LIQUID CRYSTALS LIGHT SHUTTER DRIVEN BY SURFACE ACOUSTIC WAVE

机译:聚合物分散的液晶光挡板由表面声波驱动

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We present the realization of an optical shutter based on polymer-dispersed liquid crystals (PDLCs) and surface acoustic wave (SAW). The SAW is used to induce acoustic streaming within the PDLC sample to re-orientate the LC molecules inside the LC droplets perpendicular to the substrate from radial alignment. This reversible reorientation will change the light transmission through the sample. Experimental results show that such acoustic based reorientation is the main factor for the optical shutter effect. The optimized switching-on and switching-off times are 14 s and 5 s respectively, under the applied acoustic power of 36dBm.
机译:我们介绍了基于聚合物分散的液晶(PDLC)和表面声波(SAW)的光学快门的实现。锯用于诱导PDLC样品内的声流,以从径向对准将垂直于基板的LC液滴内的LC分子重新定向。这种可逆的重新定向将通过样本改变光传输。实验结果表明,这种基于声学的重新定位是光学快门效果的主要因素。优化的开启和接通时间分别为14秒和5秒,在36dBm的应用声功率下。

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