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首页> 外文期刊>Japanese journal of applied physics >Two-Dimensional Distributions of Five Cell Parameters of Twisted Nematic Liquid Crystal Device by Numerical Photometric Ellipsometer
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Two-Dimensional Distributions of Five Cell Parameters of Twisted Nematic Liquid Crystal Device by Numerical Photometric Ellipsometer

机译:数值向光椭圆仪测量扭曲向列液晶器件五晶胞参数的二维分布

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摘要

A novel numerical photometric ellipsometer (NPE) under the condition of normal incidence and using a single wavelength laser beam is proposed wherein a continuously rotated quarter wave plate (QWP) at constant speed is required. To precisely measure the cell parameters of a twisted nematic liquid crystal device (TNLCD), the calibration of the QWP is necessary before measurement in this method. All five cell parameters of the TNLCD, namely, twisted angle, cell gap, rubbing angle, pretilt angle, and phase retardation, are obtained by least-square fitting of the measurement data versus the rotation angle of the QWP with the calculated intensity ratio of p- and s-polarization components according to our previously developed theory. The NPE can be extended to the two-dimensional distributions of all five cell parameters by using charge-coupled device (CCD) cameras. Experimentally, the results demonstrate the ability of the NPE to characterize the five cell parameters of the TNLCD in two dimensions with high accuracy and good repeatability.
机译:提出了一种在法向入射条件下使用单波长激光束的新型数字光度椭圆仪(NPE),其中需要以恒定速度连续旋转的四分之一波片(QWP)。为了精确地测量扭曲向列液晶器件(TNLCD)的晶胞参数,在此方法中进行测量之前必须对QWP进行校准。 TNLCD的所有五个单元参数,即扭曲角,单元间隙,摩擦角,预倾斜角和相位延迟,都是通过将测量数据与QWP的旋转角进行最小二乘拟合得到的,强度比为根据我们先前开发的理论,P和S极化分量。通过使用电荷耦合器件(CCD)摄像机,可以将NPE扩展到所有五个单元参数的二维分布。实验上,结果证明了NPE具有在二维中以高精度和良好的重复性表征TNLCD的五个单元参数的能力。

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  • 来源
    《Japanese journal of applied physics》 |2012年第8issue1期|p.086601.1-086601.5|共5页
  • 作者单位

    Department of Optics and Photonics, National Central University, Jhongli 320, Taiwan,Graduate Institute of Electro-Optical Engineering, Chang Gung University, Taoyuan 333, Taiwan;

    Department of Optics and Photonics, National Central University, Jhongli 320, Taiwan,Graduate Institute of Electro-Optical Engineering, Chang Gung University, Taoyuan 333, Taiwan,Center for Biomedical Engineering, Chang Gung University, Taoyuan 333, Taiwan;

    Department of Optics and Photonics, National Central University, Jhongli 320, Taiwan;

    Graduate Institute of Electro-Optical Engineering, Chang Gung University, Taoyuan 333, Taiwan;

    Graduate Institute of Electro-Optical Engineering, Chang Gung University, Taoyuan 333, Taiwan;

    Center for Biomedical Engineering, Chang Gung University, Taoyuan 333, Taiwan;

    Department of Optics and Photonics, National Central University, Jhongli 320, Taiwan;

    Department of Optics and Photonics, National Central University, Jhongli 320, Taiwan;

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