Polarization-gratings approach to deformed-helix ferroelectric liquid crystals with subwavelength pitch

Alexei D. Kiselev, Eugene P. Pozhidaev, Vladimir G. Chigrinov, and Hoi-Sing Kwok
Phys. Rev. E 83, 031703 – Published 18 March 2011

Abstract

Electro-optical properties of deformed helix ferroelectric liquid crystal (DHFLC) cells are studied by using a general theoretical approach to polarization gratings in which the transmission and reflection matrices of diffraction orders are explicitly related to the evolution operator of equations for the Floquet harmonics. In the short-pitch approximation, a DHFLC cell is shown to be optically equivalent to a uniformly anisotropic biaxial layer where one of the optical axes is normal to the bounding surfaces. For in-plane anisotropy, orientation of the optical axes and birefringence are both determined by the voltage applied across the cell and represent the parameters that govern the transmittance of normally incident light passing through crossed polarizers. We calculate the transmittance as a function of the electric field and compare the computed curves with the experimental data. The theoretical and experimental results are found to be in good agreement.

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  • Received 19 December 2010

DOI:https://doi.org/10.1103/PhysRevE.83.031703

©2011 American Physical Society

Authors & Affiliations

Alexei D. Kiselev1,2,*, Eugene P. Pozhidaev3,2,†, Vladimir G. Chigrinov2,‡, and Hoi-Sing Kwok2,§

  • 1Institute of Physics of National Academy of Sciences of Ukraine, Prospekt Nauki 46, 03028 Kyïv, Ukraine
  • 2Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong
  • 3P.N. Lebedev Physics Institute of Russian Academy of Sciences, Leninsky Prospect 53, 117924 Moscow, Russia

  • *kiselev@iop.kiev.ua
  • epozhidaev@mail.ru
  • eechigr@ust.hk
  • §eekwok@ust.hk

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Issue

Vol. 83, Iss. 3 — March 2011

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