Interfacial instability of confined 3D active droplets

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Sessa, Bennett C., Cao, Federico, Pelcovits, Robert A., Powers, Thomas R., Duclos, Guillaume
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912872554037248
author Sessa, Bennett C.
Cao, Federico
Pelcovits, Robert A.
Powers, Thomas R.
Duclos, Guillaume
author_facet Sessa, Bennett C.
Cao, Federico
Pelcovits, Robert A.
Powers, Thomas R.
Duclos, Guillaume
contents Instabilities of fluid-fluid interfaces are ubiquitous in passive soft matter. Adding activity to the interface or either fluid can dramatically change the stability of the interface. Using experiment and theory, we investigate the interfacial instability of a deformable 3D active nematic liquid crystal droplet in the isotropic phase surrounded by a passive fluid and confined between two parallel plates. Spontaneous active flows drive the growth of undulations along the active/passive interface, with the mode number of the fastest-growing mode increasing with droplet radius and decreasing with gap height. We apply the lubrication approximation to a minimal nematohydrodynamic model to determine the growth rates of all interfacial modes. The magnitude of the growth rate is determined by the active timescale and the relaxation timescales associated with liquid crystalline order, as well as capillary and viscous stresses. We find multiple points of agreement between experiment and theory, including the shape evolution of individual droplets, the growth rates of unstable modes averaged across many droplets, and the extensional shear flows observed within droplets.
format Preprint
id arxiv_https___arxiv_org_abs_2506_17532
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Interfacial instability of confined 3D active droplets
Sessa, Bennett C.
Cao, Federico
Pelcovits, Robert A.
Powers, Thomas R.
Duclos, Guillaume
Soft Condensed Matter
Instabilities of fluid-fluid interfaces are ubiquitous in passive soft matter. Adding activity to the interface or either fluid can dramatically change the stability of the interface. Using experiment and theory, we investigate the interfacial instability of a deformable 3D active nematic liquid crystal droplet in the isotropic phase surrounded by a passive fluid and confined between two parallel plates. Spontaneous active flows drive the growth of undulations along the active/passive interface, with the mode number of the fastest-growing mode increasing with droplet radius and decreasing with gap height. We apply the lubrication approximation to a minimal nematohydrodynamic model to determine the growth rates of all interfacial modes. The magnitude of the growth rate is determined by the active timescale and the relaxation timescales associated with liquid crystalline order, as well as capillary and viscous stresses. We find multiple points of agreement between experiment and theory, including the shape evolution of individual droplets, the growth rates of unstable modes averaged across many droplets, and the extensional shear flows observed within droplets.
title Interfacial instability of confined 3D active droplets
topic Soft Condensed Matter
url https://arxiv.org/abs/2506.17532