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通过氦氖激光在液晶相位调制器中形成全息聚合物网络,以实现超快光学响应。

Holographic polymer networks formed in liquid crystal phase modulators via a He-Ne laser to achieve ultra-fast optical response.

作者信息

Chien Chun-Yu, Hsu Che-Ju, Chen Yu-Wen, Tseng Sheng-Hao, Sheu Chia-Rong

出版信息

Opt Express. 2016 Apr 4;24(7):7534-42. doi: 10.1364/OE.24.007534.

Abstract

The holographic polymer network formed in liquid crystal (LC) phase modulators via a He-Ne laser in this study demonstrates ultra-fast optically response and low light scattering. These advantages are mainly caused by the small LC domains and uniform polymer network when processing LC cells via holographic exposure to a He-Ne laser. The use of this method to fabricate LC cells as phase modulators results in a decay time of 49 μs under 2π phase modulation at room temperature. The predicted fast optical response can be achieved when operating devices at high temperatures.

摘要

在本研究中,通过氦氖激光在液晶(LC)相位调制器中形成的全息聚合物网络表现出超快的光学响应和低光散射。这些优点主要是在通过全息曝光氦氖激光处理液晶盒时,由小的液晶域和均匀的聚合物网络导致的。使用这种方法制造作为相位调制器的液晶盒,在室温下2π相位调制时的衰减时间为49微秒。在高温下操作器件时,可以实现预测的快速光学响应。

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