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Article

Investigations of dual-frequency nematic liquid crystals doped with dichroic dye

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Pages 1001-1012 | Received 25 Oct 2018, Accepted 18 Nov 2018, Published online: 02 Dec 2018

References

  • Xianyu HQ, Gauza S, Wu ST. Sub-millisecond response phase modulator using a low crossover frequency dual-frequency liquid crystal. Liq Cryst. 2008;35:1409–1413.
  • Liang X, Lu YQ, Wu YH, et al. Dual-frequency addressed variable optical attenuator with submillisecond response time. Jpn J Appl Phys Part 1-Regular Pap Commun Rev Pap. 2005;44:1292–1295.
  • Lu YQ, Liang X, Wu YH, et al. Dual- frequency addressed hybrid-aligned nematic liquid crystal. Appl Phys Lett. 2004;85:3354–3356.
  • Lin XW, Hu W, Hu XK, et al. Fast response dual-frequency liquid crystal switch with photo-patterned alignments. Opt Lett. 2012;37:3627–3629.
  • Golovin AB, Shiyanovskii SV, Lavrentovich OD. Fast switching dual-frequency liquid crystal optical retarder, driven by an amplitude and frequency modulated voltage. Appl Phys Lett. 2003;83:3864–3866.
  • Hsiao YC, Wu CY, Chen CH, et al. Electro-optical device based on photonic structure with a dual-frequency cholesteric liquid crystal. Opt Lett. 2011;36:2632–2634.
  • Mazur R, Piecek W, Raszewski Z, et al. Nematic liquid crystal mixtures for 3D active glasses application. Liq Cryst. 2017;44(2):417–426.
  • Pishnyak O, Sato S, Lavrentovich OD. Electrically tunable lens based on a dual-frequency nematic liquid crystal. Appl Opt. 2006;45:4576–4582.
  • Golovin A. B., Sergij V., Shiyanovskii S. V., Lavrentovich O.D., Fast switching dual-frequency liquid crystal optical retarder, driven by an amplitude and frequency modulated voltage. Appl. Phys. Lett. 2003;83:3864–3866.
  • Hsiao YC, Hou CT, Zyryanov V, et al. Multichannel photonic devices based on tristable polymer-stabilized cholesteric textures. Opt Express. 2011;19:23952–23957.
  • Hsiao YC, Zou YH, Timofeev IV, et al. Spectral modulation of a bistable liquid crystal photonic structure by the polarization effect. Opt Mater Express. 2013;3:821–828.
  • Fegan SK, Kirsch P, Muller-Plathe F. The alignment of dichroic dyes in a nematic liquid crystal: a molecular dynamics investigation. Liq Cryst. 2018;45(9):1377–1384.
  • Sims MT, Mandle RJ, Goodby JW, et al. Guest-host systems containing anthraquinone dyes with multiple visible transitions giving positive and negative dichroic order parameters: an assessment of principal molecular axes and computational methods. Liq Cryst. 2017;44(12–13):2029–2045.
  • Chen-Yu T, Sheng-Miao H, Wei L. Dielectric relaxation dynamics in a dual-frequency nematic liquid crystal doped with C.I. Acid Red 2. Elsevier. Dyes Pigm. 2011;88:1–6.
  • Scigress 2016, Fujitsu Limited, Tokyo, Japan, http://www.fqs.pl/chemia/produkty/scigress
  • Perkowski P, Mrukiewicz M, Garbat K, et al. Precise dielectric spectroscopy of a dual-frequency nematic mixture over a broad temperature range. Liq Cryst. 2012;39:1237–1242.
  • Perkowski P, Łada D, Ogrodnik K, et al. Technical aspects of dielectric spectroscopy measurements of liquid crystals. Opto-Electron Rev. 2008;16:271–276.
  • Mrukiewicz M, Perkowski P, Garbat K. Dielectric behaviour of binary dual-frequency nematics with low crossover frequencies. Liq Cryst. 2015;42(7):1036–1042.

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