Colloidal nanoparticles in liquid crystals: Bulk properties, biaxiality and untwisting in cholesterics

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Main Authors: Rajamanickam, Prabakaran, Almutari, Fatimah, Majumdar, Apala
Format: Preprint
Published: 2025
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author Rajamanickam, Prabakaran
Almutari, Fatimah
Majumdar, Apala
author_facet Rajamanickam, Prabakaran
Almutari, Fatimah
Majumdar, Apala
contents We study the effects of colloidal nanoparticles (NPs) in liquid crystal samples in the dilute limit, in a Landau--de Gennes theoretical framework. The effects of the suspended NPs are captured by a homogenized energy, as outlined in~\cite{canevari2020design}. For spatially homogeneous samples, we explicitly compute the critical points and minimizers of the modified Landau--de Gennes energy and show that the presence of NP eliminates the first-order isotropic-nematic phase transition, stabilises elusive biaxial phases over some temperature ranges and that the symmetry of the NP boundary conditions or surface treatments dictates the bulk equilibrium phase at high temperatures. We also numerically demonstrate structural transitions from twisted helical director profiles to untwisted director profiles in cholesteric-filled channel geometries, driven by the collective effects of the NPs and increasing temperature. These transitions are reversible upon lowering the temperature in sufficiently large domains, where thermal hysteresis can also be observed. This behaviour opens interesting avenues for tuning the optical properties of confined, nano-doped cholesteric systems.
format Preprint
id arxiv_https___arxiv_org_abs_2506_01417
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Colloidal nanoparticles in liquid crystals: Bulk properties, biaxiality and untwisting in cholesterics
Rajamanickam, Prabakaran
Almutari, Fatimah
Majumdar, Apala
Soft Condensed Matter
We study the effects of colloidal nanoparticles (NPs) in liquid crystal samples in the dilute limit, in a Landau--de Gennes theoretical framework. The effects of the suspended NPs are captured by a homogenized energy, as outlined in~\cite{canevari2020design}. For spatially homogeneous samples, we explicitly compute the critical points and minimizers of the modified Landau--de Gennes energy and show that the presence of NP eliminates the first-order isotropic-nematic phase transition, stabilises elusive biaxial phases over some temperature ranges and that the symmetry of the NP boundary conditions or surface treatments dictates the bulk equilibrium phase at high temperatures. We also numerically demonstrate structural transitions from twisted helical director profiles to untwisted director profiles in cholesteric-filled channel geometries, driven by the collective effects of the NPs and increasing temperature. These transitions are reversible upon lowering the temperature in sufficiently large domains, where thermal hysteresis can also be observed. This behaviour opens interesting avenues for tuning the optical properties of confined, nano-doped cholesteric systems.
title Colloidal nanoparticles in liquid crystals: Bulk properties, biaxiality and untwisting in cholesterics
topic Soft Condensed Matter
url https://arxiv.org/abs/2506.01417