参考文献
[1] HEILMEIER G H, ZANONI L A. Guest-Host interactions in nematic liquid crystals. A new electro-optic effect [J]. Applied Physics Letters, 1968, 13(3):91-92.
[2] HEILMEIER G H, CASTELLANO J A, ZANONI L A. Guest-Host interactions in nematic liquid crystals [J]. Molecular Crystals and Liquid Crystals, 1969, 8(1):293-304.
[3] COLE H S, KASHNOW R A. A new reflective dichroic liquid crystal display device [J]. Applied Physics Letters, 1977, 30(12):619-621.
[4] WHITE D L, TAYLOR G N. New absorptive mode reflective liquid crystal display device [J]. Journal of Applied Physics, 1974, 45(11):4718-4723.
[5] HEILMEIER G H, ZANONI L A, BARTON L A. Dynamic scattering in nematic liquid crystals [J]. Applied Physics Letters, 1968, 13(1):46-47.
[6] YANG D K, WU S T. Fundamentals of Liquid Crystal Devices [M]. Hoboken: John Wiley & Sons Ltd. , 2015.
[7] ONO K, MORI I, ISHII M, et al. Progress of IPS-Pro technology for LCD-TVs [J]. SID Symposium Digest of Technical Papers, 2006, 37(1):1954-1957.
[8] TAKEDA A, KATAKA S, SASAKI T, et al. A super-high image quality multi-domain vertical alignment LCD by new rubbing-less technology [J]. SID Symposium Digest of Technical Papers, 1998, 29(1), 1077-1080.
[9] KAWAMOTO H. The history of liquid-crystal displays [J]. Proceedings of the IEEE, 2002, 90(4):460-500.
[10] HEILMEIER G H, ZANONI L A, BARTON L A. Further studies of the dynamic scattering mode in nematic liquid crystals [J]. IEEE Transactions on Electron Devices, 1970, 17(1):22-26.
[11] SCHEFFER T J. Guest-Host Devices Using Anisotropic Dyes [J]. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 1983, 309(1507):189-201.
[12] FUH Y G, TSAI M S, HUANG L J, et al. Optically switchable gratings based on polymer-dispersed liquid crystal films doped with a guest-host dye [J]. Applied Physics Letters, 1999, 74(18):2572.
[13] CHIGRINOV V G, SIMONENKO G V. Optimization of "Guest-Host" Liquid Crystal Display [J]. Molecular Crystals & Liquid Crystals Science & Technology, 2000, 351(1):51-59.
[14] SIMONENKO G V, CHIGRINOV V G, KWOK H S. Optical characteristics of a reflective guest-host liquid-crystal display with a phase compensator and no polarizing sheet [J]. Journal of Optical Technology, 2001, 68(3):216-221.
[15] COLE H S, KASHNOW R A. A new reflective dichroic liquid-crystal display device [J]. Applied Physics Letters, 1977, 30(12):619.
[16] GHARADJEDAGHI F, SAURER E. A Novel Type of Inverted Dichroic Display Employing a Positive Dielectric Anistropy Liquid Crystal [J]. IEEE Transactions on Electron Devices, 1980, 27(11):2063-2069.
[17] SCHEFFER T J. Guest-Host Devices Using Anisotropic Dyes [J]. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 1983, 309(1507):189-201.
[18] HEILMEIER G H, ZANONI L A, BARTON L A. Dynamic Scattering: A New Electrooptic Effect in Certain Classes of Nematic Liquid Crystals [J]. Proceedings of the IEEE, 1968, 56(7):1162-1171.
[19] SPRUCE G, PRINGLE R D. Polymer dispersed liquid crystal (PDLC) films [J]. Electronics & Communications Engineering Journal, 1992, 4(2):91.
[20] AMUNDSON K. Electro-optic properties of a polymer-dispersed liquid-crystal film: Temperature dependence and phase behavior [J]. Physical Review E, 1996, 53(3):2412-2422.
[21] YANG D K. Review of operating principle and performance of polarizer-free reflective liquid-crystal displays [J]. Journal of the Society for Information Display, 2012, 16(1):117-124.
[22] COX S J, RESHETNYAK V Y, SLUCKIN T J. Effective medium theory of light scattering in polymer dispersed liquid crystal films [J]. Journal of Physics D: Applied Physics, 1998, 31(14):1611-1625.
[23] MALIK P, RAINA K K. Droplet orientation and optical properties of polymer dispersed liquid crystal composite films [J]. Optical Materials, 2005, 27(3):613-617.
[24] HEILMEIER G H, ZANONI L A, BARTON L A. Dynamic scattering: A new electrooptic effect in nematic liquid crystals [J]. IEEE Transactions on Electron Devices, 2005, 15(9):691-691.
[25] KLOSOWICZ S J. Optics and electro-optics of polymer-dispersed liquid crystals: physics, technology, and application [J]. Optical Engineering, 2005, 34(12):3440-3450.
[26] LOIKO V A, KONKOLOVICH A V. Focusing of light by polymer-dispersed liquid-crystal films with nanosized droplets [J]. Journal of Experimental and Theoretical Physics, 2006, 103(6):935-943.
[27] SERBUTOVIEZ C, KLOOSTERBOER J G, BOOTS H, et al. Polymerization-Induced Phase Separation. 2. Morphology of Polymer-Dispersed Liquid Crystal Thin Films [J]. Macromolecules, 1996, 29(24):7690-7698.
[28] HEROD T E, DURAN R S. Polymer-Dispersed Liquid Crystal Monolayers [J]. Langmuir, 1998, 14(24):6956-6968.
[29] MALIK P, RAINA K K. Droplet orientation and optical properties of polymer dispersed liquid crystal composite films [J]. Optical Materials, 2004, 27(3):613-617.
[30] SCHADT M, HELFRICH W J. Voltage Dependent Optical Activity of a Twisted Nematic Liquid Crystal [J]. Applied Physics Letters, 1971, 18(4):127-128.
[31] SCHADT M, SEIBERLE H, SCHUSTER A. Optical patterning of multi-domain liquid-crystal displays with wide viewing angles [J]. Nature, 1996, 381(6579):212-215.
[32] GOOCH C H, TARRY H A. Optical characteristics of twisted nematic liquid-crystal films [J]. Electronics Letters, 1974, 10(1):2.
[33] SUH S H, ZHUANG Z, PATEL J S. Propagation and Optimization of Stokes Parameters for Arbitrary Twisted Nematic Liquid Crystal [J]. SID Symposium Digest of Technical Papers, 1998, 29(1):997-1000.
[34] ONG H L. Origin and characteristics of the optical properties of general twisted nematic liquid-crystal displays [J]. Journal of Applied Physics, 1988, 64(2):614-628.
[35] YEH P. Optical properties of general twisted-nematic liquid-crystal displays [J]. Journal of the Society for Information Display, 1997, 5(18):1398-1400.
[36] SCHEFFER T, NEHRING J. Supertwisted nematic (STN) liquid crystal displays [J]. Annual Review of Materials Science, 1997, 27(1):555-583.
[37] SCHADT M. Liquid Crystals in Information Technology [J]. Berichte Der Bunsengesellschaft Für Physikalische Chemie, 2010, 97(10):1213-1236.
[38] MA J, YANG Y C, ZHENG Z, et al. A multi-domain vertical alignment liquid crystal display to improve the V-T property [J]. Displays, 2009, 30(4-5):185-189.
[39] GE Z, ZHU X, WU T X, et al. High Transmittance In-Plane Switching Liquid Crystal Displays [J]. Advanced Display, 2006, 2(2):114-120.
[40] HARENG M, ASSOULINE G, LEIBA E. Liquid crystal matrix display by electrically controlled birefringence [J]. Proceedings of the IEEE, 1972, 60(7):913-914.
[41] SATO S, WADA M. Liquid-crystal color display by DAP-TN double-layered structure [J]. IEEE Transactions on Electron Devices, 1974, 21(5):312-313.
[42] JEWELL S A, SAMBLES J R. Optical characterization of a dual-frequency hybrid aligned nematic liquid crystal cell [J]. Optics Express, 2005, 13(7):2627-2633.
[43] MATSUMOTO S, KAWAMOTO M, MIZUNOYA K. Field-induced deformation of hybrid-aligned nematic liquid crystals: New multicolor liquid crystal display [J]. Journal of Applied Physics, 1976, 47(9):3842-3845.
[44] LEE S H, LEE S M, KIM H Y, et al. 18.1" Ultra-FFS TFT-LCD with Super Image Quality and Fast Response Time [J]. SID Symposium Digest of Technical Papers, 2001, 32(1):484-487.
[45] KOMA N, MIYASHITA X, UCHIDA T, et al. Using an OCB-Mode TFT-LCD for High-speed Transition from Splay to Bend Alignment [J]. SID Symposium Digest of Technical Papers, 2012, 30(1):28-31.
[46] ISHINABE T, WAKO K, SEKIYA K, et al. High-performance OCB-mode field-sequential-color LCD [J]. Journal of the Society for Information Display, 2008, 16(2):251-256.
[47] MEIBOOM S, SAMMON M. Structure of the Blue Phase of a Cholesteric Liquid Crystal [J]. Physical Review Letters, 1980, 44(13):882-885.
[48] HENRICH O, STRATFORD K, CATES M E, et al. Structure of Blue Phase III of Cholesteric Liquid Crystals [J]. Physical Review Letters, 2011, 106(10):107801.
[49] GE Z, GAUZA S, JIAO M, et al. Electro-optics of polymer-stabilized blue phase liquid crystal displays [J]. Applied Physics Letters, 2009, 94(10):101104.
[50] YAN L, JIAO M, WU S T. Transflective display using a polymer-stabilized blue-phase liquid crystal [J]. Optics Express, 2010, 18(16):16486-16491.
[51] JIN Y, CHENG H C, GAUZA S, et al. Extended Kerr Effect of Polymer-Stabilized Blue-Phase Liquid Crystals [J]. Applied Physics Letters, 2010, 96(7):071105.
[52] RAO L, YAN J, WU S T, et al. A large Kerr constant polymer-stabilized blue phase liquid crystal [J]. Applied Physics Letters, 2011, 98(8):081109
[53] CHEN K M, YAN J, WU S T, et al. Electrode Dimension Effects on Blue-Phase Liquid Crystal Displays [J]. Journal of Display Technology, 2011, 7(7):362-364.
[54] ZHENG Z, HU W, ZHU G, et al. Brief review of recent research on blue phase liquid crystal materials and devices [J]. Chinese Optics Letters, 2013, 11(1):011601.
[55] JUNG J E, LEE G H, JANG J E, et al. The Improvement of Polymerization Characteristics for Reflective Dye-Doped Polymer Dispersed Liquid Crystal (PDLC) Display [J]. Journal of Computational and Theoretical Nanoscience, 2012, 18(1):225-229.
[56] SUZUKI K, HASEGAWA S, TORIYAMA K, et al. Contrast Ratio of Planar-Type Phase Change Guest-Host Color LCD [J]. Japanese Journal of Applied Physics, 1983, 22(2):223-227.
[57] CHEN K M, YAN J, WU S T, et al. Electrode Dimension Effects on Blue-Phase Liquid Crystal Displays [J]. Journal of Display Technology, 2011, 7(7):362-364.