Chirality, anisotropic viscosity and elastic anisotropy in three-dimensional active nematic turbulence

Fuente: arXiv
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Autores principales: Kralj, Nika, Ravnik, Miha, Kos, Žiga
Formato: Preprint
Publicado: 2024
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author Kralj, Nika
Ravnik, Miha
Kos, Žiga
author_facet Kralj, Nika
Ravnik, Miha
Kos, Žiga
contents Various active materials exhibit strong spatio-temporal variability of their orientational order known as active turbulence, characterised by irregular and chaotic motion of topological defects, including colloidal suspensions, biofilaments, and bacterial colonies.In particular in three dimensions, it has not yet been explored how active turbulence responds to changes in material parameters and chirality.Here, we present a numerical study of three-dimensional (3D) active nematic turbulence, examining the influence of main material constants: (i) the flow-alignment viscosity, (ii) the magnitude and anisotropy of elastic deformation modes (elastic constants), and (iii) the chirality. Specifically, this main parameter space covers contractile or extensile, flow-aligning or flow tumbling, chiral or achiral elastically anisotropic active nematic fluids. The results are presented using time- and space-averaged fields of defect density and mean square velocity. The results also discuss defect density and mean square velocity as possible effective order parameters in chiral active nematics, distinguishing two chiral nematic states -- active nematic blue phase and chiral active turbulence. This research contributes to the understanding of active turbulence, providing a numerical main phase space parameter sweep to help guide future experimental design and use of active materials.
format Preprint
id arxiv_https___arxiv_org_abs_2402_10020
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chirality, anisotropic viscosity and elastic anisotropy in three-dimensional active nematic turbulence
Kralj, Nika
Ravnik, Miha
Kos, Žiga
Soft Condensed Matter
Various active materials exhibit strong spatio-temporal variability of their orientational order known as active turbulence, characterised by irregular and chaotic motion of topological defects, including colloidal suspensions, biofilaments, and bacterial colonies.In particular in three dimensions, it has not yet been explored how active turbulence responds to changes in material parameters and chirality.Here, we present a numerical study of three-dimensional (3D) active nematic turbulence, examining the influence of main material constants: (i) the flow-alignment viscosity, (ii) the magnitude and anisotropy of elastic deformation modes (elastic constants), and (iii) the chirality. Specifically, this main parameter space covers contractile or extensile, flow-aligning or flow tumbling, chiral or achiral elastically anisotropic active nematic fluids. The results are presented using time- and space-averaged fields of defect density and mean square velocity. The results also discuss defect density and mean square velocity as possible effective order parameters in chiral active nematics, distinguishing two chiral nematic states -- active nematic blue phase and chiral active turbulence. This research contributes to the understanding of active turbulence, providing a numerical main phase space parameter sweep to help guide future experimental design and use of active materials.
title Chirality, anisotropic viscosity and elastic anisotropy in three-dimensional active nematic turbulence
topic Soft Condensed Matter
url https://arxiv.org/abs/2402.10020