This thesis consists of research work in the broad area of soft condensed matter theory with a focus on active matter. The study of long wavelength, low frequency collective behavior of active particles (bacterial suspensions, fish schools, motor-microtubule extracts, active gels) forms an interesting modification to liquid-crystal hydrodynamics, in which the constituent particles carry permanent stresses that stir the fluid. Activity introduces novel instabilities and many novel aspects emerge. Our works focus on the dynamics, order, fluctuations and instabilities in these systems. In particular, we investigated the dynamics, order and fluctuation properties emerging from effective hydrodynamic descriptions of translationally ordered activ...
This is a series of four lectures presented at the 2015 Enrico Fermi Summer School in Varenna. The a...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...
Active fluids are far from equilibrium systems, nominally highly dense suspensions of elongated ele...
Open AccessThis review summarizes theoretical progress in the field of active matter, placing it in ...
This thesis presents analytical and numerical studies of the nonequilibrium dynamics of active nemat...
This articles reviews briefly our recent theoretical results on order, fluctuations and flow in coll...
This articles reviews briefly our recent theoretical results on order, fluctuations and flow in coll...
Oscillatory active nematics represent nonequilibrium suspensions of microscopic objects, such as nat...
Active matter research is a relatively new and exciting field of study that often merges concepts fr...
In this thesis we study the physics of colloidal dispersions in active and passive liquid crystals b...
In this review we summarize theoretical progress in the field of active matter, placing it in the co...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
In this thesis we studied theoretically and numerically dynamics, order and fluctuations in two dime...
We analyze a model of mutually propelled filaments suspended in a two-dimensional solvent. The system...
This is a series of four lectures presented at the 2015 Enrico Fermi Summer School in Varenna. The a...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...
Active fluids are far from equilibrium systems, nominally highly dense suspensions of elongated ele...
Open AccessThis review summarizes theoretical progress in the field of active matter, placing it in ...
This thesis presents analytical and numerical studies of the nonequilibrium dynamics of active nemat...
This articles reviews briefly our recent theoretical results on order, fluctuations and flow in coll...
This articles reviews briefly our recent theoretical results on order, fluctuations and flow in coll...
Oscillatory active nematics represent nonequilibrium suspensions of microscopic objects, such as nat...
Active matter research is a relatively new and exciting field of study that often merges concepts fr...
In this thesis we study the physics of colloidal dispersions in active and passive liquid crystals b...
In this review we summarize theoretical progress in the field of active matter, placing it in the co...
Active matter extracts energy from its surroundings at the single particle level and transforms it i...
In this thesis we studied theoretically and numerically dynamics, order and fluctuations in two dime...
We analyze a model of mutually propelled filaments suspended in a two-dimensional solvent. The system...
This is a series of four lectures presented at the 2015 Enrico Fermi Summer School in Varenna. The a...
Active fluids are ubiquitous in nature, spanning both microscopic and macroscopic length scales. They...
Topological defects play a prominent role in the physics of two-dimensional materials. When driven o...