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Electrical properties dielectric torque

The switching memory effect is a reflection of the fact that the electric displacement, being the function of both the applied field and the material s properties, needs some finite time to adjust to the value of the electric field. The widely accepted model of the instantaneous relationship between the electric displacement and the electric field in the NLC is invalid when the characteristic times of the director dynamics are close to the relaxation times for molecular permanent dipoles. This time scale is typically in the submillisecond range which is of great interest for modem fast-switching devices. The electric displacement (as well as the dielectric torque density) becomes a function of the static dielectric properties of the NLC, the present and past electric field, and the present and past director. We discussed the recently proposed theory and experimental verification of the phenomenon [11]. The model in Ref [11] should be applicable to dynamic reorientation of other LC phases in the appropriate range of times/frequencies. In the case of ferroelectric LCs, the theory should be supplemented by the consideration of spontaneous electric polarization. A similar approach should be also... [Pg.242]

In this chapter, we will be describing different electro-optic techniques that have been developed specifically for measurement of the flexocoeffi-cients. In these techniques, an electric field is applied to a nematic liquid crystal in a cell with well-defined boundary treatments. The net torque on the medium, which involves dielectric, elastic and flexoelectric components, is set to zero both in the bulk and at the two surfaces in order to And the equilibrium director configuration if a DC field is applied. In AC techniques, the above torques are balanced with the viscous torque. The optical properties of the medium are in turn calculated for the distorted profiles and compared with experimental measurements. The flexoelectric, and in some... [Pg.38]

Other broken symmetries include irregular shapes (e.g., rods, polyhedra, etc.), nonuniform surface properties (e.g., partial dielectric or metallic coatings), and nonuniform background electric fields [10]. In each case, net pumping of the fluid by ICEO results if the object is held fixed, which requires a certain force and torque. Conversely, if the object is a colloidal particle, then broken symmetries cause it to translate and rotate ICEP, as described in companion articles on the electrokinetic motion of polarizable particles and heterogeneous particles. [Pg.2420]


See other pages where Electrical properties dielectric torque is mentioned: [Pg.97]    [Pg.52]    [Pg.95]    [Pg.110]    [Pg.489]    [Pg.490]    [Pg.83]    [Pg.435]    [Pg.127]    [Pg.309]    [Pg.3]    [Pg.234]    [Pg.232]   
See also in sourсe #XX -- [ Pg.231 , Pg.232 , Pg.233 ]




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