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Proceedings Paper

Light induced gradient polymer stabilized liquid crystals for electrically variable focus lenses: the role of network morphology
Author(s): L. Zohrabyan; A.-M. Albu; A. Zohrabyan; T. Galstian
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Paper Abstract

We describe the electro-optical behavior of polymer stabilized liquid crystal (PSLCs) networks used for the development of electrically variable focus lenses. We start with a short review of mechanisms influencing the performance of those lenses, including the most important one : the light scattering. Then the role of the polymer chain morphology in electrically controllable molecular reorientation and formation of orientation defects in PSLCs is investigated. We use two non mesogene monomers, with respectively one and two functionalities, to create two different degrees of cross-linking in PSLCs. By using optical polarimetry and scattering experiments, we investigate the defect formation in those PSLCs, outline the presence of 3D orientational defects and show that the PSLCs with higher crosslinking demonstrate better electro-optical reversibility.

Paper Details

Date Published: 13 May 2010
PDF: 9 pages
Proc. SPIE 7716, Micro-Optics 2010, 77160D (13 May 2010); doi: 10.1117/12.859079
Show Author Affiliations
L. Zohrabyan, Univ. Laval (Canada)
A.-M. Albu, Polytechnical Univ. of Bucharest (Romania)
A. Zohrabyan, Univ. Laval (Canada)
T. Galstian, Univ. Laval (Canada)


Published in SPIE Proceedings Vol. 7716:
Micro-Optics 2010
Hugo Thienpont; Peter Van Daele; Jürgen Mohr; Hans Zappe, Editor(s)

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