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Late Papers

An experimental investigation of electromechanical coupling in cholesteric liquid crystals

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Pages 1827-1840 | Published online: 05 Oct 2006

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P. Oswald & A. Dequidt. (2009) Lehmann effect in chiral liquid crystals and Langmuir monolayers: an experimental survey. Liquid Crystals 36:10-11, pages 1071-1084.
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RobertJ. Twieg, Vano Chu, Cattien Nguyen, ChristineM. Dannels & Christopher Viney. (1996) Tolane oligomers: Model thermotropic liquid crystals. Liquid Crystals 20:3, pages 287-292.
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Christopher Viney, DanielJ. Brown, ChristineM. Dannels & RobertJ. Twieg. (1993) High strength disclinations in a rigid rod nematic polytolane. Liquid Crystals 13:1, pages 95-100.
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H.P. Padmini & N.V. Madhusudana. (1993) Electromechanical effect in cholesteric mixtures with a compensation temperature. Liquid Crystals 14:2, pages 497-511.
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H.P. Padmini, R. Pratibha, N.V. Madhusudana & B. Shivkumar. (1993) Electroclinic response of some ferroelectric liquid crystals. Liquid Crystals 14:2, pages 435-443.
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Qi-Feng Zhou, Xin-Hua Wan, Fei Zhang, Dong Zhang, Zhicai Wu & Xinde Feng. (1993) Polymeric nematic schlieren textures with singularities of high strength. Liquid Crystals 13:6, pages 851-858.
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N.V. Madhusudana, R. Pratibha & H.P. Padmini. (1991) Electromechanical Effect in Cholesteric Liquid Crystals with Fixed Boundary Conditions. Molecular Crystals and Liquid Crystals 202:1, pages 35-49.
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Articles from other publishers (29)

Jun Yoshioka, Yuki Ito & Koji Fukao. (2024) Morphogenesis of a chiral liquid crystalline droplet with topological reconnection and Lehmann rotation. Scientific Reports 14:1.
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Chau Dao, Jeffrey C. Everts, Miha Ravnik & Yaroslav Tserkovnyak. (2023) Nematronics: Reciprocal Coupling between Ionic Currents and Nematic Dynamics. Physical Review Letters 130:16.
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Helmut R. Brand & Harald Pleiner. (2022) A Two-Fluid Model for the Macroscopic Behavior of Nematic Fluids and Gels in a Chiral Solvent. Brazilian Journal of Physics 52:3.
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Jun Yoshioka & Fumito Araoka. (2020) Differential rotation in cholesteric pillars under a temperature gradient. Scientific Reports 10:1.
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Jun Yoshioka & Koji Fukao. (2020) Horizontal Transportation of a Maltese Cross Pattern in Nematic Liquid Crystalline Droplets under a Direct-Current Electric Field. Journal of the Physical Society of Japan 89:9, pages 094401.
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Shinji Bono, Yuji Maruyama, Katsu Nishiyama & Yuka Tabe. (2020) Heat-Driven Rigid-Body Rotation of a Mixture of Cholesteric Liquid Crystal Droplets and Colloids. The Journal of Physical Chemistry B 124:28, pages 6170-6174.
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P. Oswald. (2020) Role of an oscillatory electric field on the Lehmann rotation of cholesteric droplets. The European Physical Journal E 43:2.
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Shinji Bono, Yuji Maruyama & Yuka Tabe. (2018) Formation and dynamics of the aggregates of cholesteric double-twist cylinders. Soft Matter 14:48, pages 9798-9805.
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Helmut R. Brand, Harald Pleiner & Daniel Svenšek. (2018) Dissipative versus reversible contributions to macroscopic dynamics: the role of time-reversal symmetry and entropy production. Rheologica Acta 57:12, pages 773-791.
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Hari Krishna Bisoyi, Timothy J. Bunning & Quan Li. (2018) Stimuli‐Driven Control of the Helical Axis of Self‐Organized Soft Helical Superstructures. Advanced Materials 30:25.
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O. A. Skaldin, O. S. Tarasov, Yu. I. Timirov & E. R. Basyrova. (2018) Mechanisms of Rotational Dynamics of Chiral Liquid Crystal Droplets in an Electric Field. Journal of Experimental and Theoretical Physics 126:2, pages 255-261.
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F. Fadda, G. Gonnella, D. Marenduzzo, E. Orlandini & A. Tiribocchi. (2017) Switching dynamics in cholesteric liquid crystal emulsions. The Journal of Chemical Physics 147:6.
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H.R. Brand & H. Pleiner. 2016. Reference Module in Materials Science and Materials Engineering. Reference Module in Materials Science and Materials Engineering.
Yu. I. Timirov, O. A. Skaldin, E. R. Basyrova & Yu. A. Lebedev. (2015) Electric field induced generation and dynamics of defects in drops of nematic cholesterics. Physics of the Solid State 57:9, pages 1912-1916.
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Yu. I. Timirov, O. A. Skaldin & E. R. Basyrova. (2015) A rotation mechanism of nematic cholesteric droplets in a DC electric field. Technical Physics Letters 41:4, pages 336-337.
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Vincent P. Tondiglia, Lalgudi V. Natarajan, Christopher A. Bailey, Michael E. McConney, Kyung Min Lee, Timothy J. Bunning, Rafael Zola, Hossein Nemati, Deng-Ke Yang & Timothy J. White. (2014) Bandwidth broadening induced by ionic interactions in polymer stabilized cholesteric liquid crystals. Optical Materials Express 4:7, pages 1465.
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Helmut R. Brand, Harald Pleiner & Daniel Svenšek. (2013) Lehmann effects and rotatoelectricity in liquid crystalline systems made of achiral molecules. Physical Review E 88:2.
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Kazuyoshi Seki, Ken Ueda, Kazuhisa Uda, Kazumasa Tsunekawa & Yuka Tabe. (2011) Lehmann Force Acting on a Micro-Particle in Smectic C * Free-Standing Films Subjected to Methanol Vapor Transport . Japanese Journal of Applied Physics 50:12R, pages 125804.
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Alessandro Bosco, Mahthild G. M. Jongejan, Rienk Eelkema, Nathalie Katsonis, Emmanuelle Lacaze, Alberta Ferrarini & Ben L. Feringa. (2008) Photoinduced Reorganization of Motor-Doped Chiral Liquid Crystals: Bridging Molecular Isomerization and Texture Rotation. Journal of the American Chemical Society 130:44, pages 14615-14624.
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Daniel Svenšek, Harald Pleiner & Helmut R. Brand. (2008) Inverse Lehmann effects can be used as a microscopic pump. Physical Review E 78:2.
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A. Dequidt & P. Oswald. (2007) Does the electric Lehmann effect exist in cholesteric liquid crystals?. The European Physical Journal E 24:2, pages 157-166.
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Daniel Svenšek, Harald Pleiner & Helmut R. Brand. (2006) Phase Winding in Chiral Liquid Crystalline Monolayers due to Lehmann Effects. Physical Review Letters 96:14.
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Yuka Tabe & Hiroshi Yokoyama. (2003) Coherent collective precession of molecular rotors with chiral propellers. Nature Materials 2:12, pages 806-809.
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