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Biaxial dielectric properties of phenyl ester ferroelectric liquid crystal mixture
Authors:Y B Kim  I K Hur  J W Choi  M Buivydas  F Gouda and S T Lagerwall
Affiliation:(1) Liquid Crystal Research Center, Department of Chemistry, College of Sciences, Kon-Kuk University, 1, Hwayangdong, Kwangjinku, Seoul, 133-701, South Korea;(2) Liquid Crystal Research Center, Department of Chemistry, College of Sciences, Kon-Kuk University, 1, Hwayangdong, Kwangjinku, Seoul, 133-701, South Korea;(3) Physics Department, Chalmers University of Technology, S-41296 Gothenberg, Sweden
Abstract:Dielectric and electro-optic properties of phenyl ester FLC mixture have been studied in detail. Dielectric relatation spectroscopy was used to study the molecular dynamics and dipolar ordering. In the SmA* phase, this is accompanied by a sharp increase in the dielectric strength Deltaepsis on approaching T c. At such high frequency (2 MHz) Deltaepsi is usually negative in the SmC* and SmA* phase. In the N* phase, at lower frequencies, Deltaepsi had a weakly positive value. In the SmC* phase, deltaepsi is positive and its maximum value is less than 0.1. The dielectric biaxiality is discussed as an order parameter of the tilted smectic phase. It is verified that if the tilt angle increases according to theta prop (T CT)beta, the biaxiality increases according to deltaepsi prop (T CT)2beta. A critical exponent for theta and deltaepsi are 0.27 and 0.54, respectively. The rotational viscosity gammatheta for soft mode is of 10 Nsec/m2 in the SmA* phase. The activation energy for the rotational dynamics of Goldstone mode is estimated to be 1.4 eV from an Arrhenius plot. Optical response time is of about 50 mgrs at room temperature in SmC* phase, and is on the order of 10 mgrs in the N* phase and almost independent of the applied field.
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