paper

Saddle-splay term induced orientational instability in nematic liquid crystal cells and director fluctuations at substrates

arXiv:cond-mat/0309241 · doi:10.1103/PhysRevE.69.041701

Abstract

We analyze stability of the planar orientational structure in a nematic liquid crystal (NLC) cell with planar anchoring conditions at both substrates. Specifically, we study the instabilities of the ground state caused by surface elasticity at large saddle-splay elastic constant, . For relatively small violating the Ericksen inequalities the theory predicts that the critical fluctuation mode of the wavelength, , will render the structure unstable when the thickness of the cell is below its critical value, . The parity of the critical mode changes as the twist-splay ratio is passing through the unity. Further increase of beyond the second threshold value, , leads to the instability with respect to the short wavelength fluctuations regardless of the cell thickness. We compute the critical thickness and the critical wavelength as functions of , the twist-splay ratio and the azimuthal anchoring strength.

extended version, uses revtex4, 29 pages, 13 figures

Saddle-splay term induced orientational instability in nematic liquid crystal cells and director fluctuations at substrates · wovepaper