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Dual mode switching of cholesteric liquid crystal device with three-terminal electrode structure |
Optics Express, Vol. 20, Issue 22, pp. 24376-24381 (2012)
http://dx.doi.org/10.1364/OE.20.024376
Acrobat PDF (909 KB)
Abstract
We propose a cholesteric liquid crystal device with a three-terminal electrode structure that can be operated in both the dynamic and the bistable modes. Fast switching (less than 5 ms) between the planar and the in-plane-field-induced states can be realized by applying an in-plane electric field, and conventional bistable switching between the planar and focal conic states can be realized by applying a vertical electric field.
© 2012 OSA
1. Introduction
D.-K. Yang, J. W. Doane, Z. Yaniv, and J. Glasser, “Cholesteric reflective display: drive scheme and contrast,” Appl. Phys. Lett. 64(15), 1905–1907 (1994). [CrossRef]
K.-H. Kim, D. H. Song, Z.-G. Shen, B. W. Park, K.-H. Park, J.-H. Lee, and T.-H. Yoon, “Fast switching of long-pitch cholesteric liquid crystal device,” Opt. Express 19(11), 10174–10179 (2011). [CrossRef] [PubMed]
H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys. 106(1), 014503 (2009). [CrossRef]
D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett. 98(26), 263508 (2011). [CrossRef]
2. Principle of operation for dual-mode switching
H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys. 106(1), 014503 (2009). [CrossRef]
D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett. 98(26), 263508 (2011). [CrossRef]
H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys. 106(1), 014503 (2009). [CrossRef]
D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett. 98(26), 263508 (2011). [CrossRef]
3. Three-terminal electrode structure and experiments
J.-I. Baek, Y.-H. Kwon, J. C. Kim, and T.-H. Yoon, “Dual-mode switching of a liquid crystal panel for viewing angle control,” Appl. Phys. Lett. 90(10), 101104 (2007). [CrossRef]
J. H. Lee, T. Kim, T.-H. Yoon, J. C. Kim, C. G. Jhun, and S. B. Kwon, “Transflective dual operating mode liquid crystal display with wideband configuration,” J. Opt. Soc. Korea 14(3), 260–265 (2010). [CrossRef]
4. Results and discussion
H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys. 106(1), 014503 (2009). [CrossRef]
D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett. 98(26), 263508 (2011). [CrossRef]
5. Conclusions
Acknowledgments
References and links
D.-K. Yang, J. W. Doane, Z. Yaniv, and J. Glasser, “Cholesteric reflective display: drive scheme and contrast,” Appl. Phys. Lett. 64(15), 1905–1907 (1994). [CrossRef] | |
L.-C. Chien, U. Muller, M.-F. Nabor, and J. W. Doane, “Multicolor reflective cholesteric displays,” Soc. Inf. Disp. Int. Symp. Dig. Tech. Pap. 26, 169–171 (1995). | |
B. Taheri, J. W. Doane, D. Davis, and D. St. John, “Optical properties of bistable cholesteric reflective displays,” SID Int. Symp. Digest Tech. Papers 27, 39–42 (1996). | |
M.-H. Lu, “Bistable reflective cholesteric liquid crystal display,” J. Appl. Phys. 81(3), 1063–1066 (1997). [CrossRef] | |
M. Xu, F. Xu, and D.-K. Yang, “Effect of cell structure on the reflection of cholesteric liquid crystal displays,” J. Appl. Phys. 83(4), 1938–1944 (1998). [CrossRef] | |
J. Anderson, P. Watson, J. Ruth, V. Sergan, and P. Bos, “Fast frame rate bistable cholesteric texture reflective displays,” SID Int. Symp. Digest Tech. Papers 29(1), 806–809 (1998). | |
A. Khan, X.-Y. Huang, R. Armbruster, F. Nicholson, N. Miller, B. Wall, and J. W. Doane, “Super high brightness reflective cholesteric display,” SID Int. Symp. Digest Tech. Papers 32(1), 460–463 (2001). | |
C.-Y. Huang, K.-Y. Fu, K.-Y. Lo, and M.-S. Tsai, “Bistable transflective cholesteric light shutters,” Opt. Express 11(6), 560–565 (2003). [CrossRef] [PubMed] | |
D.-K. Yang, “Flexible bistable cholesteric reflective displays,” J. Disp. Technol. 2(1), 32–37 (2006). [CrossRef] | |
H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys. 106(1), 014503 (2009). [CrossRef] | |
K.-H. Kim, H.-J. Jin, K.-H. Park, J.-H. Lee, J. C. Kim, and T.-H. Yoon, “Long-pitch cholesteric liquid crystal cell for switchable achromatic reflection,” Opt. Express 18(16), 16745–16750 (2010). [CrossRef] [PubMed] | |
K.-H. Kim, H.-J. Jin, D. H. Song, B.-H. Cheong, H.-Y. Choi, S. T. Shin, J. C. Kim, and T.-H. Yoon, “Switching of liquid-crystal devices between reflective and transmissive modes using long-pitch cholesteric liquid crystals,” Opt. Lett. 35(20), 3504–3506 (2010). [CrossRef] [PubMed] | |
J. Ma, L. Shi, and D.-K. Yang, “Bistable polymer stabilized cholesteric texture light shutter,” Appl. Phys. Express 3(2), 021702 (2010). [CrossRef] | |
D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett. 98(26), 263508 (2011). [CrossRef] | |
K.-H. Kim, D. H. Song, Z.-G. Shen, B. W. Park, K.-H. Park, J.-H. Lee, and T.-H. Yoon, “Fast switching of long-pitch cholesteric liquid crystal device,” Opt. Express 19(11), 10174–10179 (2011). [CrossRef] [PubMed] | |
P. G. de Gennes and J. Prost, The Physics of Liquid Crystals (Oxford University Press, 1993). | |
S. T. Wu and D.-K. Yang, Reflective Liquid Crystal Displays (Wiley, 2001). | |
D.-K. Yang and S.-T. Wu, Fundamentals of liquid Crystal Devices (Wiley, 2006). | |
J.-I. Baek, Y.-H. Kwon, J. C. Kim, and T.-H. Yoon, “Dual-mode switching of a liquid crystal panel for viewing angle control,” Appl. Phys. Lett. 90(10), 101104 (2007). [CrossRef] | |
J.-I. Baek, K.-H. Kim, J. C. Kim, T.-H. Yoon, S. T. Shin, and H. S. Woo, “Fast turn-off switching of a liquid crystal cell by optically hidden relaxation,” SID Int. Symp. Digest Tech. Papers 39, 1846–1849 (2008). | |
J. H. Lee, T. Kim, T.-H. Yoon, J. C. Kim, C. G. Jhun, and S. B. Kwon, “Transflective dual operating mode liquid crystal display with wideband configuration,” J. Opt. Soc. Korea 14(3), 260–265 (2010). [CrossRef] |
OCIS Codes
(230.0230) Optical devices : Optical devices
(230.3720) Optical devices : Liquid-crystal devices
ToC Category:
Optical Devices
History
Original Manuscript: August 17, 2012
Revised Manuscript: October 5, 2012
Manuscript Accepted: October 7, 2012
Published: October 10, 2012
Citation
Ki-Han Kim, Byeong-Hun Yu, Sun-Wook Choi, Seung-Won Oh, and Tae-Hoon Yoon, "Dual mode switching of cholesteric liquid crystal device with three-terminal electrode structure," Opt. Express 20, 24376-24381 (2012)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-20-22-24376
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References
- D.-K. Yang, J. W. Doane, Z. Yaniv, and J. Glasser, “Cholesteric reflective display: drive scheme and contrast,” Appl. Phys. Lett.64(15), 1905–1907 (1994). [CrossRef]
- L.-C. Chien, U. Muller, M.-F. Nabor, and J. W. Doane, “Multicolor reflective cholesteric displays,” Soc. Inf. Disp. Int. Symp. Dig. Tech. Pap. 26, 169–171 (1995).
- B. Taheri, J. W. Doane, D. Davis, and D. St. John, “Optical properties of bistable cholesteric reflective displays,” SID Int. Symp. Digest Tech. Papers 27, 39–42 (1996).
- M.-H. Lu, “Bistable reflective cholesteric liquid crystal display,” J. Appl. Phys.81(3), 1063–1066 (1997). [CrossRef]
- M. Xu, F. Xu, and D.-K. Yang, “Effect of cell structure on the reflection of cholesteric liquid crystal displays,” J. Appl. Phys.83(4), 1938–1944 (1998). [CrossRef]
- J. Anderson, P. Watson, J. Ruth, V. Sergan, and P. Bos, “Fast frame rate bistable cholesteric texture reflective displays,” SID Int. Symp. Digest Tech. Papers 29(1), 806–809 (1998).
- A. Khan, X.-Y. Huang, R. Armbruster, F. Nicholson, N. Miller, B. Wall, and J. W. Doane, “Super high brightness reflective cholesteric display,” SID Int. Symp. Digest Tech. Papers 32(1), 460–463 (2001).
- C.-Y. Huang, K.-Y. Fu, K.-Y. Lo, and M.-S. Tsai, “Bistable transflective cholesteric light shutters,” Opt. Express11(6), 560–565 (2003). [CrossRef] [PubMed]
- D.-K. Yang, “Flexible bistable cholesteric reflective displays,” J. Disp. Technol.2(1), 32–37 (2006). [CrossRef]
- H. H. Lee, J.-S. Yu, J.-H. Kim, S.-I. Yamamoto, and H. Kikuchi, “Fast electro-optic device controlled by dielectric response of planarly aligned cholesteric liquid crystals,” J. Appl. Phys.106(1), 014503 (2009). [CrossRef]
- K.-H. Kim, H.-J. Jin, K.-H. Park, J.-H. Lee, J. C. Kim, and T.-H. Yoon, “Long-pitch cholesteric liquid crystal cell for switchable achromatic reflection,” Opt. Express18(16), 16745–16750 (2010). [CrossRef] [PubMed]
- K.-H. Kim, H.-J. Jin, D. H. Song, B.-H. Cheong, H.-Y. Choi, S. T. Shin, J. C. Kim, and T.-H. Yoon, “Switching of liquid-crystal devices between reflective and transmissive modes using long-pitch cholesteric liquid crystals,” Opt. Lett.35(20), 3504–3506 (2010). [CrossRef] [PubMed]
- J. Ma, L. Shi, and D.-K. Yang, “Bistable polymer stabilized cholesteric texture light shutter,” Appl. Phys. Express3(2), 021702 (2010). [CrossRef]
- D. J. Gardiner, S. M. Morris, F. Castles, M. M. Qasim, W.-S. Kim, S. S. Choi, H.-J. Park, I.-J. Chung, and H. J. Coles, “Polymer stabilized chiral nematic liquid crystals for fast switching and high contrast electro-optic devices,” Appl. Phys. Lett.98(26), 263508 (2011). [CrossRef]
- K.-H. Kim, D. H. Song, Z.-G. Shen, B. W. Park, K.-H. Park, J.-H. Lee, and T.-H. Yoon, “Fast switching of long-pitch cholesteric liquid crystal device,” Opt. Express19(11), 10174–10179 (2011). [CrossRef] [PubMed]
- P. G. de Gennes and J. Prost, The Physics of Liquid Crystals (Oxford University Press, 1993).
- S. T. Wu and D.-K. Yang, Reflective Liquid Crystal Displays (Wiley, 2001).
- D.-K. Yang and S.-T. Wu, Fundamentals of liquid Crystal Devices (Wiley, 2006).
- J.-I. Baek, Y.-H. Kwon, J. C. Kim, and T.-H. Yoon, “Dual-mode switching of a liquid crystal panel for viewing angle control,” Appl. Phys. Lett.90(10), 101104 (2007). [CrossRef]
- J.-I. Baek, K.-H. Kim, J. C. Kim, T.-H. Yoon, S. T. Shin, and H. S. Woo, “Fast turn-off switching of a liquid crystal cell by optically hidden relaxation,” SID Int. Symp. Digest Tech. Papers 39, 1846–1849 (2008).
- J. H. Lee, T. Kim, T.-H. Yoon, J. C. Kim, C. G. Jhun, and S. B. Kwon, “Transflective dual operating mode liquid crystal display with wideband configuration,” J. Opt. Soc. Korea14(3), 260–265 (2010). [CrossRef]
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