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首页> 外文期刊>Journal of the Society for Information Display >Alignment control of liquid crystals in a 1.0-μm-pitch spatial light modulator by lattice-shaped dielectric wall structure
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Alignment control of liquid crystals in a 1.0-μm-pitch spatial light modulator by lattice-shaped dielectric wall structure

机译:通过晶格形介电壁结构控制间距为1.0μm的空间光调制器中的液晶

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摘要

We achieved uniform liquid crystal (LC) alignment in lattice-shaped dielectric walls 1m in pitch; this is a prerequisite when driving the individual pixels of spatial light modulators, facilitating the development of practical electronic holographic displays with a wide field of view. In lattice-shaped dielectric walls, LC alignment becomes unstable, particularly on the bottom and the walls; the LC directors tend to align parallel to the walls. To overcome this problem, we created lattice-shaped walls featuring partition plates that allow uniform LC alignment. When the plates confine LCs to small regions exhibiting spatial anisotropy, the LC elastic effect and wall anchoring forces align the LC directors parallel to the long anisotropic axis. We found that pixels 0.5mx1.0m in pitch formed if the partition plates were sufficiently thick to allow shielding of electric field leakage.
机译:我们在间距为1m的格子状介电壁中实现了均匀的液晶(LC)排列;这是驱动空间光调制器的各个像素时的先决条件,从而有助于开发具有宽视场的实用电子全息显示器。在格子状介电壁中,LC对准变得不稳定,尤其是在底部和壁上; LC控制器趋向于平行于墙对齐。为了克服这个问题,我们创建了具有分隔板的格子状墙,这些分隔板允许均匀的LC对齐。当板将LC限制在显示空间各向异性的小区域时,LC弹性效应和壁锚固力将LC指向矢平行于长各向异性轴对齐。我们发现,如果隔板足够厚,可以屏蔽电场泄漏,则像素的间距为0.5mx1.0m。

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