首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Polarization properties of a nematic liquid-crystal spatial light modulator for phase modulation
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Polarization properties of a nematic liquid-crystal spatial light modulator for phase modulation

机译:用于相调制的向列液晶空间光调制器的偏振特性

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The polarization properties of a nematic zero-twist liquid-crystal (NLC) spatial light modulator (SLM) were studied. A large ratio between the liquid-crystal (LC) layer thickness and the pixel pitch combined with spatial variations in the applied electric field causes fringing fields between pixels. Depending on the LC alignment, the electric field components within the LC layer can result in a twist deformation. The produced inhomogeneous optical anisotropy affects the polarization of light propagating through the device. We experimentally examined polarization effects in different diffraction orders for both binary and blazed phase gratings. Simulations of the LC deformation together with finite-difference time-domain simulations for the optical propagation were used to calculate the corresponding far-field intensities. It was demonstrated how rigorous simulations of the NLC SLM properties can be used to understand the polarization features of different diffraction orders.
机译:研究了向列零扭曲液晶(NLC)空间光调制器(SLM)的偏振特性。液晶(LC)层厚度和像素间距之间的较大比率与所施加电场的空间变化相结合会导致像素之间出现边缘场。根据LC排列,LC层内的电场分量可能导致扭曲变形。产生的不均匀光学各向异性会影响通过设备传播的光的偏振。我们通过实验检查了二进制和闪耀相位光栅在不同衍射级的偏振效应。 LC变形的模拟以及光传播的时域有限差分模拟用于计算相应的远场强度。演示了如何使用NLC SLM特性的严格模拟来了解不同衍射级的偏振特征。

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