Concealed Holograms based on Cholesteric Liquid Crystals

H. Yoshida, SeongYong Cho, M. One, M. Ozaki
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Abstract

A hologram element that is transparent to visible light is demonstrated using a cholesteric liquid crystal. The operation of the hologram is based on the Berry phase effect in which the phase of reflected light varies depending on the orientation direction of the liquid crystal director on the substrate surface. Transparency in the visible is achieved by employing a cholesteric material with the reflection band in the infrared. Because of the sinusoidal modulation of the dielectric tensor, higher order reflections are suppressed for normal incidence and occurs over a very narrow region even for oblique incidence. This leads to a novel class of holographic optical elements where the element appears completely transparent when information is encoded in its phase.
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基于胆甾液晶的隐藏全息图
使用胆甾液晶演示了一种对可见光透明的全息图元件。全息图的操作是基于贝瑞相位效应,其中反射光的相位根据基板表面液晶指示器的取向方向而变化。可见光的透明度是通过采用具有红外反射带的胆甾体材料来实现的。由于介质张量的正弦调制,高阶反射在正常入射时被抑制,即使在斜入射时也会在非常窄的区域内发生。这导致了一种新型全息光学元件,当信息在其相位中编码时,元件看起来完全透明。
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