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Hidden Gratings in Holographic Liquid Crystal Polymer-Dispersed Liquid Crystal Films

机译:全息液晶聚合物分散液晶膜的隐藏光栅

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摘要

Dynamic diffraction gratings that are hidden in the field off state are fabricated utilizing a room-temperature photocurable liquid crystal (LC) monomer and nematic LC (NLC) using holographic photopolymerization techniques. These holographic LC polymer dispersed LCs (HLCPDLCs) are hidden because of the refractive index matching between the LC polymer and the NLC regions in the as formed state (no E-field applied). Application of a moderate E-field (5 V/mu m) generates a refractive index mismatch because of the NLC reorientation (along the E-field) generating high-diffraction efficiency transmission gratings. These dynamic gratings are characterized by morphological, optical, and electrooptical techniques. They exhibit a morphology made of oriented LC polymer regions (containing residual NLC) alternating with a two-phase region of an NLC and LC polymer. Unlike dassic holographic polymer-dispersed LC gratings formed with a nonmesogenic monomer, there is index matching between the as-formed alternating regions of the grating. These HLCPDLCs exhibit broad band and high diffraction efficiency (approximate to 90%) at the Bragg angle, are transparent to white light across the visible range because of the refractive index matching, and exhibit fast response times (1 ms). The ability of HLCPDLCs not to consume electrical power in the off state opens new possibilities for the realization of energy-efficient switchable photonic devices.
机译:利用全息光聚合技术利用室温可光固化液晶(LC)单体和向甲型LC(NLC)来制造在场关闭状态下隐藏在场关闭状态的动态衍射光栅。由于LC聚合物和作为形成状态的NLC区域之间的折射率匹配(不施加E场),这些全息LC聚合物分散的LCs(HLCPDLC)被隐藏。应用中等E场(5V / mu m)产生折射率不匹配,因为NLC Reorientation(沿着E场)产生高衍射效率传输光栅。这些动态光栅的特征在于形态学,光学和电光技术。它们表现出由与NLC和LC聚合物的两相区域交替的由取向的LC聚合物区(含有残留NLC)制成的形态。与用非染色单体形成的Dassic全息聚合物分散的LC光栅不同,在光栅的形状交替区域之间存在指数匹配。由于折射率匹配,这些HLCPDLCs在布拉格角处表现出宽带和高衍射效率(近似为90%),对可见范围的白光是透明的,并且表现出快速响应时间(1ms)。 HLCPDLC在关闭状态下消耗电力的能力为实现节能可切换光子器件开辟了新的可能性。

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