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首页> 外文期刊>Journal of Applied Physics >Vertical Alignment Nematic Liquid Crystal Cell Controlled By Double-side In-plane Switching With Positive Dielectric Anisotropy Liquid Crystal
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Vertical Alignment Nematic Liquid Crystal Cell Controlled By Double-side In-plane Switching With Positive Dielectric Anisotropy Liquid Crystal

机译:具有正介电各向异性液晶的双面面内开关控制的垂直取向向列液晶盒

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摘要

We propose a vertical alignment liquid crystal cell controlled by double-side in-plane switching with a positive dielectric anisotropy liquid crystal material. In this structure, the pixel electrodes are interdigital electrodes, which are deposited on the bottom and top substrates parallel to each other. In the voltage-off state, the liquid crystal molecules are vertically aligned under the crossed polarizers; hence the cell appears to be dark. When an in-plane field is applied, the liquid crystal molecules tilt down to the left or right along the field direction, which is at 45° with respect to the input polarizer, giving rise to maximum transmission of the incident light. We fabricated the proposed cells, which show higher transmittance and lower driving voltage compared with the conventional vertical alignment configuration with a positive dielectric anisotropy liquid crystal. The improved electro-optical properties are due to the stronger in-plane field compared with the configuration having one-side electrode. In this device, the response time and viewing angle characteristics are almost the same as the conventional structure.
机译:我们提出一种垂直取向液晶盒,该液晶盒由具有正介电各向异性液晶材料的双面面内开关控制。在这种结构中,像素电极是叉指型电极,其被沉积在彼此平行的底部和顶部基板上。在断电状态下,液晶分子在交叉的偏振器下垂直取向。因此细胞似乎是黑暗的。当施加面内场时,液晶分子沿场方向向左或向右倾斜,该方向相对于输入偏振片成45°,从而使入射光的透射率最大。我们制造了所提出的单元,与具有正介电各向异性液晶的常规垂直排列配置相比,它们具有更高的透射率和更低的驱动电压。与具有一侧电极的配置相比,电光特性的改善归因于更强的面内场。在该装置中,响应时间和视角特性与常规结构几乎相同。

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