Influence of Homeotropic Anchoring Walls upon Nematic and Smectic Phases
Masashi Torikai, Mamoru Yamashita
Abstract
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Masashi Torikai, Mamoru Yamashita
Abstract
Open-access reader
McMillan liquid crystal model sandwiched between strong homeotropic anchoring walls is studied. Phase transitions between isotropic, nematic, and smectic A phases are investigated for wide ranges of an interaction parameter and of the system thickness. It is confirmed that the anchoring walls induce an increase in transition temperatures, dissappearance of phase transitions, and an appearance of non-spontaneous nematic phase. The similarity between influence of anchoring walls and that of external fields is discussed.
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McMillan liquid crystal model sandwiched between strong homeotropic anchoring walls is studied. Phase transitions between isotropic, nematic, and smectic A phases are investigated for wide ranges of an interaction parameter and of the system thickness. It is confirmed that the anchoring walls induce an increase in transition temperatures, dissappearance of phase transitions, and an appearance of non-spontaneous nematic phase. The similarity between influence of anchoring walls and that of external fields is discussed.
Key concepts: Homeotropic alignment, Anchoring, Liquid crystal, Materials science, Isotropy, Condensed matter physics, Phase (matter), Phase transition