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タイトル: | Self-organization of droplets and buckling of droplet chains in free-standing liquid crystalline films(Soft Matter as Structured Materials) |
著者: | Voltz, Camilla |
発行日: | 20-Sep-2005 |
出版者: | 物性研究刊行会 |
誌名: | 物性研究 |
巻: | 84 |
号: | 6 |
開始ページ: | 858 |
終了ページ: | 859 |
抄録: | While nematic liquid crystals are good models for anisotropic bulk emulsions, free-standing films represent a convenient model for two-dimensional systems. Here free-standing smectic films are investigated at the transition from the smectic C phase to the isotropic phase. In the vicinity of the bulk transition temperature isotropic droplets of micrometer size appear in the film. A characteristic feature of the droplets is their mutual interaction by elastic distortions of the c-director. The director deformations created by isotropic droplets of different sizes are discussed. Depending upon droplet size and anchoring conditions, topological defects can be induced in the c-director field. The isotropic droplets can interact and self-organize in different patterns, like chains, lattices and rings. If the c-director field in a free-standing film is prepared as a target pattern with a continuous radial deformation, the droplets align tangentially in regular chains in the structure of the c-director field. Incorporation of additional droplets lengthens the chains at given ring diameter until they form complete rings. Further chain growth introduces a reversible buckling-instability(see Fig. 1) with a characteristic wavelength. The phenomenon is similar in many respects to growth processes in biological systems or Euler buckling in polymer foils. |
記述: | この論文は国立情報学研究所の電子図書館事業により電子化されました。 |
URI: | http://hdl.handle.net/2433/110333 |
出現コレクション: | Vol.84 No.6 |
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