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Original Articles

Static Strain Waves in Cholesteric Liquid Crystals: Response to Megnetic and Electric Fields

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Pages 81-99 | Received 23 Aug 1976, Published online: 21 Mar 2007

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Read on this site (7)

Oleg D. Lavrentovich. (2020) Design of nematic liquid crystals to control microscale dynamics. Liquid Crystals Reviews 8:2, pages 59-129.
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Tomowki Nagaya, Yasuhiro Hjkita, Hiroshi Orihara & Yoshihiro Ishibashi. (1997) Pattern Formation of Cholesteric Finger Under a Magnetic Field. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 302:1, pages 391-396.
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Michel Mitov & Pierre Sixou. (1993) Study of a Cholesteric Liquid Crystal Polymer in Solution in a Low Molar Weight Liquid Crystal: Phase Diagram and Electric Field Effect. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 231:1, pages 11-28.
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J.C. Lee, D.W. Allender & V.D. Neff. (1992) The Effect of Homeotropic Surface Anchoring on the Critical Voltage for Unwinding the Cholesteric Phase. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 210:1, pages 11-20.
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H.P. Hinov & E. Kukleva. (1984) A Novel Polar Electro-Optic Effect in Thin Large-Pitch Cholesteric Films. Molecular Crystals and Liquid Crystals 109:2-4, pages 203-224.
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H.P. Hinov, E. Kukleva & A.I. Derzhanski. (1983) Electro-Optical Behavior of a Novel Strong-Weak and Weak-Weak Anchored Large-Pitch Cholesteric. Molecular Crystals and Liquid Crystals 98:1, pages 109-124.
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Articles from other publishers (15)

Guillaume Durey, Hayley R. O. Sohn, Paul J. Ackerman, Etienne Brasselet, Ivan I. Smalyukh & Teresa Lopez-Leon. (2020) Topological solitons, cholesteric fingers and singular defect lines in Janus liquid crystal shells. Soft Matter 16:11, pages 2669-2682.
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G. De Matteis, L. Martina, C. Naya & V. Turco. (2019) Helicoids in chiral liquid crystals under external fields. Physical Review E 100:5.
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A.N. Zakhlevnykh & V.S. Shavkunov. (2018) Soft anchoring effect and magnetic field induced transitions in homeotropic cholesteric liquid crystal layer. Journal of Molecular Liquids 267, pages 229-241.
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I. I. Smalyukh, B. I. Senyuk, P. Palffy-Muhoray, O. D. Lavrentovich, H. Huang, E. C. Gartland, V. H. Bodnar, T. Kosa & B. Taheri. (2005) Electric-field-induced nematic-cholesteric transition and three-dimensional director structures in homeotropic cells. Physical Review E 72:6.
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F. Karimi Pour Haddadan, D. W. Allender & S. Žumer. (2001) Pseudo-Casimir effect in untwisted chiral nematic liquid crystals. Physical Review E 64:6.
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J. Baudry, S. Pirkl & P. Oswald. (1999) Effect of the electric conductivity on the drift velocity of the cholesteric fingers of the second type in confined geometry. Physical Review E 60:3, pages 2990-2993.
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Yang-Ming Zhu & Deng-Ke Yang. (1999) Observation of Pattern Evolution during Homeotropic-Focal Conic Transition in Cholesteric Liquid Crystals. Physical Review Letters 82:24, pages 4855-4858.
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J. Baudry, S. Pirkl & P. Oswald. (1999) Looped finger transformation in frustrated cholesteric liquid crystals. Physical Review E 59:5, pages 5562-5571.
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Tomoyuki Nagaya, Yasuhiro Hikita, Hiroshi Orihara & Yoshihiro Ishibashi. (1998) Growth of Cholesteric Finger under the Magnetic Field. Journal of the Physical Society of Japan 67:7, pages 2546-2550.
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J. Baudry, S. Pirkl & P. Oswald. (1998) Topological properties of singular fingers in frustrated cholesteric liquid crystals. Physical Review E 57:3, pages 3038-3049.
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A.S. Arrott & T.L. Templeton. (1997) Micromagnetics and hysteresis as prototypes for complex systems. Physica B: Condensed Matter 233:4, pages 259-271.
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P. Ribière, S. Pirkl & P. Oswald. (1991) Electric-field-induced phase transitions in frustrated cholesteric liquid crystals of negative dielectric anisotropy. Physical Review A 44:12, pages 8198-8209.
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Anthony S. Arrott. (1991) Micromagnetics of ultrathin films and surfaces. Journal of Applied Physics 69:8, pages 5212-5214.
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A.E. Stieb. (1980) Structure of elongated and spherulitic domains in long pitch cholesterics with homeotropic boundary alignment. Journal de Physique 41:9, pages 961-969.
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M. J. Press & A.S. Arrott. (1978) Flow induced Grandjean lines in cholesteric liquid crystals. Journal de Physique 39:7, pages 750-759.
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