Interaction energies in paranematic colloids

Fuente: arXiv
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Main Authors: Golovaty, Dmitry, Taylor, Jamie, Venkatraman, Raghavendra, Zarnescu, Arghir
Format: Preprint
Published: 2023
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author Golovaty, Dmitry
Taylor, Jamie
Venkatraman, Raghavendra
Zarnescu, Arghir
author_facet Golovaty, Dmitry
Taylor, Jamie
Venkatraman, Raghavendra
Zarnescu, Arghir
contents We consider a system of colloidal particles embedded in a paranematic -- an isotropic phase of a nematogenic medium above the temperature of the nematic-to-isotropic transition. In this state, the nematic order is induced by the boundary conditions in a narrow band around each particle and it decays exponentially in the bulk. We develop rigorous asymptotics of the linearization of the appropriate variational model that allow us to describe weak far-field interactions between the colloidal particles in two dimensional paranematic suspensions. We demonstrate analytically that decay rates of solutions to the full nonlinear and linear problems are similar and verify numerically that the interactions between the particles in these problems have similar dependence on the distance between the particles. Finally, we perform Monte-Carlo simulations for a system of colloidal particles in a paranematic and describe the statistical properties of this system.
format Preprint
id arxiv_https___arxiv_org_abs_2308_06331
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Interaction energies in paranematic colloids
Golovaty, Dmitry
Taylor, Jamie
Venkatraman, Raghavendra
Zarnescu, Arghir
Analysis of PDEs
Materials Science
Soft Condensed Matter
Mathematical Physics
We consider a system of colloidal particles embedded in a paranematic -- an isotropic phase of a nematogenic medium above the temperature of the nematic-to-isotropic transition. In this state, the nematic order is induced by the boundary conditions in a narrow band around each particle and it decays exponentially in the bulk. We develop rigorous asymptotics of the linearization of the appropriate variational model that allow us to describe weak far-field interactions between the colloidal particles in two dimensional paranematic suspensions. We demonstrate analytically that decay rates of solutions to the full nonlinear and linear problems are similar and verify numerically that the interactions between the particles in these problems have similar dependence on the distance between the particles. Finally, we perform Monte-Carlo simulations for a system of colloidal particles in a paranematic and describe the statistical properties of this system.
title Interaction energies in paranematic colloids
topic Analysis of PDEs
Materials Science
Soft Condensed Matter
Mathematical Physics
url https://arxiv.org/abs/2308.06331