Topological defects as nucleation points of the nematic-isotropic phase transition in liquid crystal shells
Han, Yucen and Lagerwall, Jan and Majumdar, Apala (2024) Topological defects as nucleation points of the nematic-isotropic phase transition in liquid crystal shells. Physical Review E, 109 (6). 064702. ISSN 2470-0053 (https://doi.org/10.1103/PhysRevE.109.064702)
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Abstract
The transition from a nematic to an isotropic state in a self-closing spherical liquid crystal shell with tangential alignment is a stimulating phenomenon to investigate, as the topology dictates that the shell exhibits local isotropic points at all temperatures in the nematic phase range, in the form of topological defects. The defects may thus be expected to act as nucleation points for the phase transition upon heating beyond the bulk nematic stability range. Here we study this peculiar transition, theoretically and experimentally, for shells with two different configurations of four +1/2 defects, finding that the defects act as the primary nucleation points if they are co-localized in each other’s vicinity. If the defects are instead spread out across the shell, they again act as nucleation points, albeit not necessarily the primary ones. Beyond adding to our understanding of how the orientational order–disorder transition can take place in the shell geometry, our results have practical relevance for, e.g., the use of curved liquid crystals in sensing applications or for liquid crystal elastomer actuators in shell shape, undergoing a shape change as a result of the nematic–isotropic transition.
ORCID iDs
Han, Yucen, Lagerwall, Jan and Majumdar, Apala ORCID: https://orcid.org/0000-0003-4802-6720;-
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Item type: Article ID code: 89343 Dates: DateEvent11 June 2024Published15 May 2024AcceptedSubjects: Science > Mathematics
Science > Physics > Solid state physics. NanoscienceDepartment: Faculty of Science > Mathematics and Statistics Depositing user: Pure Administrator Date deposited: 22 May 2024 12:48 Last modified: 11 Nov 2024 14:19 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/89343