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SECTION VII: APPLICATIONS

Mechanism of Fast Response and Recover in Bend Alignment Cell

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Pages 383-389 | Published online: 04 Oct 2006

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Ashok Chaudhary, Matvey Klebanov & Ibrahim Abdulhalim. (2018) Liquid crystals alignment with PbS nanosculptured thin films. Liquid Crystals 45:1, pages 3-10.
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Masanobu Mizusaki & Yuichiro Yamada. (2013) Voltage holding properties of bend liquid crystal cells with treatments for bend alignment stabilisation. Liquid Crystals 40:2, pages 267-271.
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Articles from other publishers (17)

Makoto Watanabe, Kiyoshi Kotani & Yasuhiko Jimbo. (2022) High-speed liquid crystal display simulation using parallel reservoir computing approach. Japanese Journal of Applied Physics 61:8, pages 087001.
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John G. WebsterHideo Fujikake & Takahiro Ishinabe. 1999. Wiley Encyclopedia of Electrical and Electronics Engineering. Wiley Encyclopedia of Electrical and Electronics Engineering 1 14 .
Takahiro Ishinabe, Yuzuka Morita, Yuji Ohno, Tetsuya Miyashita, Hideo Fujikake & Tatsuo Uchida. (2014) [Invited Paper] High Precision Measurement of Twist Elastic Constant K22 of Liquid Crystal Materials using Ellipsometry Analysis. ITE Transactions on Media Technology and Applications 2:1, pages 52-59.
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Martin Schadt, Hidefumi Yoshida, Kenji Okamoto, Hidehiro Seki & Akio Sasaki. 2014. The Liquid Crystal Display Story. The Liquid Crystal Display Story 131 170 .
Jin-Jei Wu, Shui-Shang Hu, Chia-Chun Hsu, Tien-Jung Chen & King-Lien Lee. (2013) Electro Optical Characteristics of High-Pretilt Twisted Liquid Crystal pi-Cells. Applied Physics Express 6:1, pages 012201.
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Masanobu Mizusaki, Tetsuya Miyashita & Tatsuo Uchida. (2010) Behavior of ion affecting image sticking on liquid crystal displays under application of direct current voltage. Journal of Applied Physics 108:10.
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Takahiro Ishinabe, Kazuhiro Wako & Tatsuo Uchida. (2010) A fast-switching OCB-mode LCD for high-quality display applications. Journal of the Society for Information Display 18:11, pages 968.
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Tatsuo Uchida. (2009) 1. Display Technology and Academic Research on Displays. The Journal of The Institute of Image Information and Television Engineers 63:10, pages 1353-1357.
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Tien-Jung Chen, Yuan-Hsin Cheng & Sheng-Ming Wu. (2008) Twisted liquid crystal pi cell stabilized by polymer-sustained alignment. Applied Physics Letters 93:22.
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Yi-Ning Chen, Jin-Jei Wu & Hung-Lin Ke. (2008) The Transverse Motions of Charged Nano-Particles under an AC Electric Field in a Nematic Liquid Crystal Cell. Japanese Journal of Applied Physics 47:11R, pages 8631.
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Yi-Ning Chen, Jin-Jei Wu & Hung-Lin Ke. (2008) Electrohydrodynamic Behaviors in the Multiwalled Carbon Nanotubes Doped Optically Compensated Bend Polymer-Dispersed Nematic Liquid Crystal Cell. Japanese Journal of Applied Physics 47:11R, pages 8487.
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Chi -Yen Huang, Wen -Yi Jhuang & Chia -Ting Hsieh. (2008) Switching of polymer-stabilized vertical alignment liquid crystal cell. Optics Express 16:6, pages 3859.
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Chi-Yen Huang, Ri-Xin Fung & Ying-Ging Lin. (2007) Effects of Curing Conditions on Electrooptical Properties of Polymer-Stabilized Liquid Crystal Pi Cells. Japanese Journal of Applied Physics 46:8R, pages 5230.
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Tien-Jung Chen, Yu-Ping Kuo, Jin-Jei Wu & Chia-Hsing Sun. (2006) Effect of Curing Voltage on Formation of Polymer-Aligned Liquid-Crystal Pi Cells. Japanese Journal of Applied Physics 45:4R, pages 2702.
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Hiroshi Kikuchi, Hirofumi Yamamoto, Hiroto Sato, Masahiro Kawakita, Kuniharu Takizawa & Hideo Fujikake. (2003) Formation of Polymer-Wall-Stabilized Bend-Mode Liquid Crystal Cells. Journal of Photopolymer Science and Technology 16:2, pages 181-186.
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T. Uchida. (2003) Fast response liquid crystal displays. Fast response liquid crystal displays.
H. Nakamura, J. Crain & K. Sekiya. (2001) Optimized active-matrix drives for liquid crystal displays. Journal of Applied Physics 90:5, pages 2122-2127.
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