Polar switching in the smectic- Ad PA phase composed of asymmetric bent-core molecules

No Thumbnail Available
Date
2010-01-20
Authors
Guo, Lingfeng
Dhara, Surajit
Sadashiva, B. K.
Radhika, S.
Pratibha, R.
Shimbo, Yoshio
Araoka, Fumito
Ishikawa, Ken
Takezoe, Hideo
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
We have studied mesogenic properties in the smectic- Ad PA phase of an asymmetric bent-core liquid crystal by means of polarizing optical microscopy, second-harmonic generation (SHG), electro-optical (EO), and dielectric measurements. In homeotropically aligned cells, EO switching is clearly observed from a schlieren texture with both four- and two-brush defects to a uniform bright domain under the application of very low in-plane electric field below 1V/μm. The phase is SHG active under an electric field, i.e., SHG gradually increases without a threshold and saturates with the increasing field. In homogeneous cells, by applying triangular wave field at saturated voltage, the splitting of the polarization switching current peak is observed, indicating that the mesophase is antiferroelectric. The dielectric studies indicate a Debye-type relaxation of the transverse dipoles associated with the rotation of the molecules about their long axis. The dc bias-dependent dielectric relaxation time and the dielectric strength suggest that a field-induced antiferroelectric-ferroelectric phase transition occurs continuously beyond 1.2V/μm and is reversible. The field-dependent texture observation is consistent with the dielectric measurements. Two possible models are proposed to interpret the continuous phase transition. © 2010 The American Physical Society.
Description
Keywords
Citation
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics. v.81(1)