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Self-organization of N* inclusions in SmC* free-standing films
Authors:P. Cluzeau  V. Bonnand  G. Joly  V. Dolganov  H.T. Nguyen
Affiliation:(1) Laboratoire de Dynamique et Structure des Matériaux Moléculaires, UMR CNRS 8024, Université de Lille I, 59655 Villeneuve d'Ascq, France, FR;(2) Institute of Solid State Physics, Russian Academy of Sciences, 142432, Chernogolovska, Moscow district, Russia, RU;(3) Centre de Recherche Paul Pascal, CNRS, Avenue A. Schweitzer, 33600 Pessac, France, FR
Abstract:The behaviour of freely suspended smectic-C* ( SmC*) films at the bulk SmC*-cholesteric ( N*) phase transition has been investigated using polarized-reflected-light microscopy. Our experimental observations show that above the bulk SmC*- N* phase transition the N* order appears in different ways according to the film thickness. In thin films, the conventional layer-by-layer thinning occurs. In films of intermediate thickness N* inclusions nucleate inside the SmC* film. The distortions of the in-plane orientational order of the SmC* host phase induce elastic interactions between the inclusions and lead to their self-organization in chain-like structures. Both the dynamic of the chaining and the parameters driving the equilibrium distance between the inclusions in the chain are investigated. In thick films, N* fingers grow inside the film. The influence of the experimental conditions on the various processes is analysed. Received 1 July 2002 / Published online: 15 April 2003 RID="a" ID="a"e-mail: Philippe.cluzeau@univ-lille1.fr
Keywords:PACS. 64.70.Md Transitions in liquid crystals –   61.30.Jf Defects in liquid crystals –   61.30.Gd Orientational order of liquid crystals   electric and magnetic field effects on order
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