JOURNAL ARTICLE

GRATING DIFFRACTION IN (ANTI-)FERROELECTRIC LIQUID CRYSTAL DISPLAYS

Arnout De MeyereJohan FornierHerman Pauwels

Year: 1996 Journal:   Ferroelectrics Vol: 181 (1-4)Pages: 1-10   Publisher: Taylor & Francis

Abstract

For many inhomogeneous structures in LCD's, such as antiferro- or ferrielectric LCD's and striped textures in classical or short-pitch ferroelectric LCD's, we present a strong, rigorous algorithm for the calculation of the optical transmission. We illustrate the technique in case of some simple alternating structures. The number of diffraction orders strongly depends on the grating period (Λ) - light wavelength (λ) ratio Λ/λ. For the alternating antiferroelectric state the transmission of visible light can be treated with only the zeroth order of diffraction. In this case, we find that the AFLC can be simulated as a birefringent layer with the principal axes parallel and perpendicular to the layers. In case Λ/λ > 1 higher orders of diffraction come into play. The dimension of the corresponding eigenvalue problem becomes too large for analytical treatment. We give some numerical results.

Keywords:
Ferroelectricity Diffraction Materials science Optics Birefringence Grating Diffraction grating Wavelength Liquid crystal Diffraction efficiency Liquid-crystal display Antiferroelectricity Perpendicular Optoelectronics Physics Dielectric Geometry

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8
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0.49
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Citation History

Topics

Liquid Crystal Research Advancements
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Photonic and Optical Devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Photorefractive and Nonlinear Optics
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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