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首页> 外文期刊>Applied Physics Letters >Ultra-fast solid state electro-optical modulator based on liquid crystal polymer and liquid crystal composites
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Ultra-fast solid state electro-optical modulator based on liquid crystal polymer and liquid crystal composites

机译:基于液晶聚合物和液晶复合材料的超快固态电光调制器

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摘要

A different generation of polymer-dispersed liquid crystals (PDLCs) based on a liquid crystalline polymer host is reported wherein the fluid behavior of the reactive mesogenic monomer is an enabler to concentration windows (liquid crystal polymer/liquid crystal) (and subsequent morphologies) not previously explored. These liquid crystal (LC) polymer/LC composites, LCPDLCs, exhibit excellent optical and electro-optical properties with negligible scattering losses in both the ON and OFF states. These systems thus have application in systems where fast phase modulation of optical signal instead of amplitude control is needed. Polarized optical microscopy and high resolution scanning electron microscopy confirm a bicontinuous morphology composed of aligned LC polymer coexisting with a phase separated LC fluid. Operating voltages, switching times, and spectra of LCPDLCs compare favourably to conventional PDLC films. The LCPDLCs exhibit a low switching voltage (4–5 V/μm), symmetric and submillisecond (200 μs) on/off response times, and high transmission in both the as formed and switched state in a phase modulation geometry.
机译:报道了基于液晶聚合物主体的另一代聚合物分散液晶(PDLC),其中反应性介晶单体的流体行为促成了浓缩窗口(液晶聚合物/液晶)(和随后的形态)的浓缩。以前曾探索过。这些液晶(LC)聚合物/ LC复合材料LCPDLC在ON和OFF状态下均表现出出色的光学和电光特性,且散射损失可忽略不计。因此,这些系统可用于需要对光信号进行快速相位调制而不是幅度控制的系统中。偏光光学显微镜和高分辨率扫描电子显微镜证实了由连续排列的LC聚合物与相分离的LC流体共存组成的双连续形态。 LCPDLC的工作电压,切换时间和光谱与常规PDLC膜相比具有优势。 LCPDLC具有较低的开关电压(4–5 V /μm),对称和亚毫秒级(200μs)的开/关响应时间,并且在相调制几何形状的已形成状态和开关状态下均具有较高的透射率。

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