Two-dimensional active nematics are often modeled using phenomenological continuum theories that describe the dynamics of the nematic director and fluid velocity through partial differential equations (PDEs). While these models provide a statistically accurate description of the experiments, the identification of the relevant terms in the PDEs and their parameters is usually indirect. Here, we adapt a recently developed method to automatically identify optimal continuum models for active nematics directly from the spatio-temporal director and velocity data, via sparse fitting of the coarse-grained fields onto generic low order PDEs. We test the method extensively on computational models, and then apply it to data from experiments on microtu...
Using simulations of self-propelled agents with short-range repulsion and nematic alignment, we expl...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We consider the effects of a pressure gradient on the spontaneous flow of an active nematic liquid c...
Data-driven modeling seeks to extract a parsimonious model for a physical system directly from measu...
This thesis presents analytical and numerical studies of the nonequilibrium dynamics of active nemat...
We study the dynamics of a tunable 2D active nematic liquid crystal composed of microtubules and kin...
We examine the scaling with activity of the emergent length scales that control the nonequilibrium d...
Nematic liquid crystals are fluids whose anisotropic molecules have long range orientational order, ...
Active nematic fluids confined in narrow channels generate spontaneous flows when the activity is su...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Using a minimal continuum model, we investigate the interplay between circular confinement and subst...
Active nematic fluids confined in narrow channels are known to generate spontaneous flows when the a...
Recent advances in high-resolution imaging techniques and particle-based simulation methods have ena...
The physics of active liquid crystals is mostly governed by the interplay between elastic forces tha...
Using simulations of self-propelled agents with short-range repulsion and nematic alignment, we expl...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We consider the effects of a pressure gradient on the spontaneous flow of an active nematic liquid c...
Data-driven modeling seeks to extract a parsimonious model for a physical system directly from measu...
This thesis presents analytical and numerical studies of the nonequilibrium dynamics of active nemat...
We study the dynamics of a tunable 2D active nematic liquid crystal composed of microtubules and kin...
We examine the scaling with activity of the emergent length scales that control the nonequilibrium d...
Nematic liquid crystals are fluids whose anisotropic molecules have long range orientational order, ...
Active nematic fluids confined in narrow channels generate spontaneous flows when the activity is su...
Active turbulence describes a flow regime that is erratic, and yet endowed with a characteristic len...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2019, Tutor: ...
Using a minimal continuum model, we investigate the interplay between circular confinement and subst...
Active nematic fluids confined in narrow channels are known to generate spontaneous flows when the a...
Recent advances in high-resolution imaging techniques and particle-based simulation methods have ena...
The physics of active liquid crystals is mostly governed by the interplay between elastic forces tha...
Using simulations of self-propelled agents with short-range repulsion and nematic alignment, we expl...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
We consider the effects of a pressure gradient on the spontaneous flow of an active nematic liquid c...