Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoelastic behaviour of the fluid by constraining the orientational structure in a way that inevitably requires global changes not achievable with any set of local deformations. In active nematic liquid crystals, topological defects not only dictate the global structure of the director, but also act as local sources of motion, behaving as self-propelled particles. In this article, we present a detailed analytical and numerical study of the mechanics of topological defects in active nematic liquid crystals
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
The motion of topological defects is an important feature of the dynamics of all liquid crystals, an...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
Topological defects are at the root of the large-scale organization of liquid crystals. In two-dimen...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
We study the interplay between flow, structure, and topology in liquid crystals, in both passive and...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
The motion of topological defects is an important feature of the dynamics of all liquid crystals, an...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
Topological defects are at the root of the large-scale organization of liquid crystals. In two-dimen...
We study a continuum model of an extensile active nematic to show that mesoscale turbulence develops...
We study the interplay between flow, structure, and topology in liquid crystals, in both passive and...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...
We propose a simple phenomenological model for hydrodynamic defect dynamics in nematic liquid crysta...