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用于红外空间光调制器的低压聚合物网络液晶

Low voltage polymer network liquid crystal for infrared spatial light modulators.

作者信息

Peng Fenglin, Xu Daming, Chen Haiwei, Wu Shin-Tson

出版信息

Opt Express. 2015 Feb 9;23(3):2361-8. doi: 10.1364/OE.23.002361.

Abstract

We report a low-voltage and fast-response polymer network liquid crystal (PNLC) infrared phase modulator. To optimize device performance, we propose a physical model to understand the curing temperature effect on average domain size. Good agreement between model and experiment is obtained. By optimizing the UV curing temperature and employing a large dielectric anisotropy LC host, we have lowered the 2π phase change voltage to 22.8V at 1.55μm wavelength while keeping response time at about 1 ms. Widespread application of such a PNLC integrated into a high resolution liquid-crystal-on-silicon (LCoS) for infrared spatial light modulator is foreseeable.

摘要

我们报道了一种低电压、快速响应的聚合物网络液晶(PNLC)红外相位调制器。为了优化器件性能,我们提出了一个物理模型来理解固化温度对平均畴尺寸的影响。模型与实验结果取得了良好的一致性。通过优化紫外固化温度并采用具有大介电各向异性的液晶主体,我们在1.55μm波长处将2π相位变化电压降低到了22.8V,同时将响应时间保持在约1ms。这种集成到高分辨率硅基液晶(LCoS)中的PNLC在红外空间光调制器中的广泛应用是可预见的。

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