Structural stability of nematic liquid crystal droplets in the light of the catastrophe theory
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URI (для ссылок/цитирований):
https://www.worldscientific.com/doi/abs/10.1142/S0217984919504347https://elib.sfu-kras.ru/handle/2311/142735
Автор:
Паршин, А. М.
Коллективный автор:
Политехнический институт
Кафедра электротехнологии и электротехники
Дата:
2019-12Журнал:
Modern Physics Letters BКвартиль журнала в Scopus:
Q3Квартиль журнала в Web of Science:
Q3Библиографическое описание:
Паршин, А. М. Structural stability of nematic liquid crystal droplets in the light of the catastrophe theory [Текст] / А. М. Паршин // Modern Physics Letters B. — 2019. — Т. 33 (№ 34). — С. 19504-1--19504-14Аннотация:
Dynamical systems and defects in liquid crystals (LCs) are described using topological
methods. Meanwhile, the director eld distribution in LC droplets is affected by many
bulk and surface factors that are di cult to take into account in the topological analysis.
Therefore, the structural instability of a LC droplet formed in a magnetic eld has been
investigated by us in the framework of the catastrophe theory. The effect of temperature
on the control parameters of the cusp catastrophe, which leads to the transition from a
bipolar structure with extended poles to the homogeneous or radial con guration, has
been estimated. It has been established from the potential curves that the transition is
induced by the variation in the LC director orientation between the potential minima
related to the LC polymer anchoring energy and magnetic eld. The interplay of the
cusp catastrophe control parameters and anchoring parameters has been elucidated.