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Original Articles

Hysteresis-free electro-optical switching in conductive ferroelectric liquid crystals: experiments and modelling

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Pages 61-70 | Received 05 Feb 2003, Accepted 18 Aug 2003, Published online: 19 May 2010

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A. R. Karaawi, M. V. Gavrilyak, V. A. Boronin, A. M. Gavrilyak, J. V. Kazachonok & F. V. Podgornov. (2020) Direct current electric conductivity of ferroelectric liquid crystals–gold nanoparticles dispersion measured with capacitive current technique. Liquid Crystals 47:10, pages 1507-1515.
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F. V. Podgornov, M. Gavrilyak, A. Karaawi, V. Boronin & W. Haase. (2018) Mechanism of electrooptic switching time enhancement in ferroelectric liquid crystal/gold nanoparticles dispersion. Liquid Crystals 45:11, pages 1594-1602.
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F. V. Podgornov, R. Wipf, B. Stühn, A. V. Ryzhkova & W. Haase. (2016) Low-frequency relaxation modes in ferroelectric liquid crystal/gold nanoparticle dispersion: impact of nanoparticle shape. Liquid Crystals 43:11, pages 1536-1547.
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V. Manjuladevi, J. K. Vij & Yu. P. Panarin. (2007) The Role of Spontaneous Polarization and the Thickness of Alignment Layers on the V-Shaped Switching in FLC Cells. Molecular Crystals and Liquid Crystals 477:1, pages 223/[717]-231/[725].
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L. M. Blinov & S. P. Palto. (2005) A New Insight on the Bistability and Relevant Phenomena in Ferroelectric Smectic C* Liquid Crystals. Molecular Crystals and Liquid Crystals 429:1, pages 31-53.
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Articles from other publishers (9)

Georgi B. Hadjichristov. (2023) Control of Coherent Light through Microperiodic Director Modulation in Nematic Films under Low-Voltage DC Electric Field. Materials 16:17, pages 6014.
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Georgi B. Hadjichristov, Yordan G. Marinov, Alexander G. Petrov, Emanuela Bruno, Lucia Marino & Nicola Scaramuzza. (2014) Electro-optically responsive composites of gold nanospheres in 5CB liquid crystal under direct current and alternating current joint action. Journal of Applied Physics 115:8, pages 083107.
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G. Derfel & G. Barbero. (2009) Numerical study of ionic contribution to susceptibility and impedance of dielectric liquid layer. Journal of Molecular Liquids 150:1-3, pages 43-50.
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Grzegorz Derfel. (2009) Numerical study of ionic current in dielectric liquid layer subjected to ac voltage. Journal of Molecular Liquids 144:1-2, pages 59-64.
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V. Manjuladevi, Yu. P. Panarin, Jang-Kun Song, J. K. Vij & B. K. Sadashiva. (2008) V-shaped electro-optic response observed in a chiral ferroelectric smectic liquid crystal. Applied Physics Letters 93:9.
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Meng-yao Wang, Wei Pan, Bin Luo, Wei-li Zhang & Xi-hua Zou. (2008) Improved Equivalent Circuit Model for V-Shaped, Thresholdless Switching Ferroelectric Liquid Crystals. Japanese Journal of Applied Physics 47:5R, pages 3546.
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V. Manjuladevi, Yu. P. Panarin & J. K. Vij. (2007) Experimental study for the conditions of analog switching in ferroelectric liquid crystal cells. Applied Physics Letters 91:5.
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Hiroshi Moritake, Kohji Toda, Fedor V. Podgornov, Eugene P. Pozhidaev & Wolfgang Haase. (2006) Spontaneous Polarization Influence of V-shaped Switching Ferroelectric Liquid Crystals on Pulse Driving Using Active Switch. Japanese Journal of Applied Physics 45:9S, pages 7538.
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L. M. Blinov, S. P. Palto, E. P. Pozhidaev, Yu. P. Bobylev, V. M. Shoshin, A. L. Andreev, F. V. Podgornov & W. Haase. (2005) High frequency hysteresis-free switching in thin layers of smectic- ferroelectric liquid crystals . Physical Review E 71:5.
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