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Ion Transport in a Reflective Liquid-Crystal-on-Silicon Microdisplay Cell

Authors
Hwang, Sung-HeeKim, KangbaekKim, Won RaeShin, Dong-Soo
Issue Date
May-2009
Publisher
IOP Publishing Ltd
Citation
Japanese Journal of Applied Physics, v.48, no.5, pp 1 - 7
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
Japanese Journal of Applied Physics
Volume
48
Number
5
Start Page
1
End Page
7
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/41268
DOI
10.1143/JJAP.48.051503
ISSN
0021-4922
1347-4065
Abstract
A built-in potential exists in the reflective liquid-crystal-on-silicon (LCoS) microdisplay cell due to the work-function difference between the aluminum and indium-tin-oxide electrodes. As a consequence, the flicker is generated unless the dc offset voltage is applied to compensate the built-in potential. In this paper, we present the experimental result that the dc offset voltage changes with time as the display is operated and the ions are generated in the liquid crystal (LC). To understand the experimental result, we simulate the ion motion in the LCoS cell by considering both the drift and diffusion. We discuss how the ion concentration in the LC affects the screening of the internal electric field in the bulk LC region and subsequently the built-in potential in the LCoS cell. We show that for an ion concentration higher than the value required to fully compensate the initial built-in potential, the polarity of the built-in potential is changed due to the high electric field near electrodes. By matching the experimental and simulation results, we predict how the ion concentration in the LC increases as a function of operation time. (C) 2009 The Japan Society of Applied Physics
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ERICA 첨단융합대학 (ERICA 반도체·디스플레이공학전공)
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