Analysis of the longitudinal component of the electric field generated by flat and pixelated liquid crystal displays

Onur Kulce, L. Onural
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引用次数: 1

Abstract

The longitudinal, z, component of the electric field is investigated for the pixelated and flat liquid crystal displays (LCDs) for monochromatic case. The pixelation process is assumed to occur in free space. The z component is computed in the Fourier domain by using Gauss's Law from the x and y components of the output electric field. The effect of the display parameters are discussed for a y polarized display in a phase only operation. It is found that, in the low frequency regions, the size of the region of the large magnitudes becomes smaller as the width of the active region increases. Moreover, the validity of the scalar theory for a single pixel is evaluated for varying pixel sizes. It is shown that, when the ratio of the width of the active region to wavelength is between 1.5 and 5, the error decays with oscillations between 43% and 5%. When that ratio is larger than 15, the error does not exceed 3%.
平板和像素化液晶显示器产生的电场纵向分量分析
研究了单色情况下像素化平板液晶显示器(lcd)的纵向电场分量。假设像素化过程发生在自由空间中。利用高斯定律从输出电场的x和y分量在傅里叶域中计算z分量。讨论了显示参数对纯相位y极化显示的影响。结果表明,在低频区,随着活动区宽度的增大,大震级区域的尺寸变小。此外,对于不同像素大小的单个像素,评估了标量理论的有效性。结果表明,当有源区宽度与波长之比在1.5 ~ 5之间时,误差衰减,振荡幅度在43% ~ 5%之间。当该比值大于15时,误差不超过3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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