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Elimination of off-axis light leakage in a homogeneously-aligned liquid crystal cell

机译:消除均匀排列的液晶盒中的轴外漏光

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Among various liquid crystal display modes, the in-plane switching mode exhibits the widest viewing angle because the liquid crystals are homogeneously-aligned initially and rotate within a plane parallel to the substrates when an in-plane field is applied. However, further improvement is still needed for viewing high-quality dark images from the bisector direction of the crossed polarizers. Several compensation schemes have been proposed to eliminate the off-axis light leakage in a homogeneously-aligned liquid crystal cell. Although a 100:1 iso-contrast contour at an wavelength of 550 nm can cover the entire viewing cone, light leakage at other wavelengths still remains very severe. In this paper we introduce achromatic optical compensation methods using uniaxial films to eliminate the off-axis light leakage at the dark state in homogeneously-aligned liquid crystal cell.Uniaxial films with different dispersion characteristics are used so that they can compensate one another to achieve achromatic optical compensation. The retardation values are optimized through numerical research with the aid of the Poincare sphere.
机译:在各种液晶显示模式中,面内切换模式显示出最宽的视角,因为当施加面内场时,液晶最初均匀地排列并且在平行于基板的平面内旋转。然而,从交叉偏振器的等分线方向观看高质量暗图像仍需要进一步的改进。已经提出了几种补偿方案来消除均匀排列的液晶单元中的轴外光泄漏。尽管波长为550 nm的100:1等对比度轮廓可以覆盖整个视锥,但其他波长的光泄漏仍然非常严重。在本文中,我们介绍了使用单轴薄膜的消色差光学补偿方法,以消除均匀排列的液晶单元在暗态下的轴外光泄漏。使用具有不同色散特性的单轴薄膜可以相互补偿以实现消色差光学补偿。借助Poincare球面,通过数值研究优化了延迟值。

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