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Updated: Apr 19, 2026

Orientational Transition in a Liquid Crystal Triggered by the Thermodynamic Growth of Interfacial Wetting Sheets
Published on: May 15, 2017
Coalescence of two critical points and accelerated phase dynamics in orientational ternary mixtures
1Tokyo Metropolitan University, Department of Physics, 1-1 Minami-osawa, Hachiouji-shi, Tokyo 192-0397, Japan.
Abstract:
Motivated by intracellular phase separation, we theoretically investigate how molecular orientation and multicomponent nature affect phase behavior. We construct a minimal model for a ternary mixture composed of isotropic (I), anisotropic (A), and solvent (s) components by combining the Flory-Huggins and Maier-Saupe theories. We obtain two main results from evaluating the phase behavior and the time evolution of the density fields. First, for certain interaction parameters, two distinct binodal lines appear in the plane of the volume fractions of the I- and A-components, and merge through their respective critical points. Second, rapid droplet formation emerges due to a weakly first-order phase transition, characterized by a discontinuity of the spinodal surface. The first result indicates the possibility of continuous transformation between the two phase-separated states. The second result suggests that anisotropic molecules can regulate phase-separation kinetics. These findings might be physically general beyond biological systems.
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