We describe the flows and morphological dynamics of topological defect lines and loops in three-dimensional active nematics and show, using theory and numerical modeling, that they are governed by the local profile of the orientational order surrounding the defects. Analyzing a continuous span of defect loop profiles, ranging from radial and tangential twist to wedge ± 1 / 2 profiles, we show that the distinct geometries can drive material flow perpendicular or along the local defect loop segment, whose variation around a closed loop can lead to net loop motion, elongation, or compression of shape, or buckling of the loops. We demonstrate a correlation between local curvature and the local orientational profile of the defect loop, in...
We describe the geometry of bend distortions in liquid crystals and their fundamental degeneracies, ...
When confined to curved surfaces or to bounded volumes, ordered materials often experience geometric...
Topological structures are effective descriptors of the nonequilibrium dynamics of diverse many-body...
We develop a description of defect loops in three-dimensional active nematics based on a multipole e...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
Point-like motile topological defects control the universal dynamics of diverse two-dimensional acti...
Active nematics contain topological defects that (under sufficient activity) move, create, and annih...
While studies of active nematics in two dimensions have shed light on various aspects of the flow re...
Active matter is naturally out of equilibrium which results in the emergence of diverse dynamic stea...
We introduce a general description of localised distortions in active nematics using the framework o...
We numerically investigate how spatial variations of extensile or contractile active stress affect b...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
The physics of active liquid crystals is mostly governed by the interplay between elastic forces tha...
Recent experimental observations have demonstrated that topological defects can facilitate the devel...
Active matter seeks to bring a physical understanding to bear on biological systems. These systems a...
We describe the geometry of bend distortions in liquid crystals and their fundamental degeneracies, ...
When confined to curved surfaces or to bounded volumes, ordered materials often experience geometric...
Topological structures are effective descriptors of the nonequilibrium dynamics of diverse many-body...
We develop a description of defect loops in three-dimensional active nematics based on a multipole e...
In this thesis, we study aspects of active matter with the aim of application to biological systems ...
Point-like motile topological defects control the universal dynamics of diverse two-dimensional acti...
Active nematics contain topological defects that (under sufficient activity) move, create, and annih...
While studies of active nematics in two dimensions have shed light on various aspects of the flow re...
Active matter is naturally out of equilibrium which results in the emergence of diverse dynamic stea...
We introduce a general description of localised distortions in active nematics using the framework o...
We numerically investigate how spatial variations of extensile or contractile active stress affect b...
Topological defects are distinctive signatures of liquid crystals. They profoundly affect the viscoe...
The physics of active liquid crystals is mostly governed by the interplay between elastic forces tha...
Recent experimental observations have demonstrated that topological defects can facilitate the devel...
Active matter seeks to bring a physical understanding to bear on biological systems. These systems a...
We describe the geometry of bend distortions in liquid crystals and their fundamental degeneracies, ...
When confined to curved surfaces or to bounded volumes, ordered materials often experience geometric...
Topological structures are effective descriptors of the nonequilibrium dynamics of diverse many-body...