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首页> 外文期刊>Applied optics >Fast switching characteristics of a microlens array using the electroclinic effect of SmA~(*) liquid crystals
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Fast switching characteristics of a microlens array using the electroclinic effect of SmA~(*) liquid crystals

机译:利用SmA〜(*)液晶的电斜效应实现微透镜阵列的快速切换特性

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摘要

We present a microlens array characterized by the electroclinic effect of chiral smectic A (SmA~(*)) liquid crystals, which show the very fast dynamic switching characteristics required in high-speed optical devices. In order to easily control the intensity at the focal length of the proposed dynamic microlens structure, we adopt a solid-type liquid crystal polymer with optical anisotropy, which can split the beam intensity into two directions, depending on the vectorial portion of the polarization state of the light. The proposed microlens shows a focal intensity tunable by controlling the polarization of light at the SmA* liquid crystal. The lens has a very fast switching time of about 24(mu)s, which is several times faster than conventional microlens arrays with surface-stabilized ferroelectric liquid crystals.
机译:我们介绍了一种微透镜阵列,其特征在于手性近晶A(SmA〜(*))液晶的电斜晶效应,显示出高速光学器件中所需的非常快速的动态切换特性。为了容易地控制所提出的动态微透镜结构的焦距处的强度,我们采用具有光学各向异性的固态液晶聚合物,根据偏振态的矢量部分,它可以将光束强度分为两个方向的光。所提出的微透镜显示出通过控制SmA *液晶上的光的偏振可调节的聚焦强度。该透镜具有约24μs的非常快的切换时间,这比具有表面稳定的铁电液晶的常规微透镜阵列快几倍。

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