Active colloids constitute a novel class of materials composed of colloidal-scale particles locally converting chemical energy into motility, mimicking micro-organisms. Evolving far from equilibrium, these systems display structural organizations and dynamical properties distinct from thermalized colloidal assemblies. Harvesting the potential of this new class of systems requires the development of a conceptual framework to describe these intrinsically nonequilibrium systems. We use sedimentation experiments to probe the nonequilibrium equation of state of a bidimensional assembly of active Janus microspheres and conduct computer simulations of a model of self-propelled hard disks. Self-propulsion profoundly affects the equation of state, b...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
8 pages, 4 figs; to be published in Phys. Rev. X. Réf Journal: Phys. Rev. X 5, 011004 (2015)Interna...
Active matter, comprising many active agents interacting and moving in fluids or more complex enviro...
Active matter, comprising many active agents interacting and moving in fluids or more complex enviro...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active colloids, which can be thought of as the synthetic analog of swimming bacteria, exhibit remar...
One characteristic feature of life is to convert energy from one form to another to perform function...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...
8 pages, 4 figs; to be published in Phys. Rev. X. Réf Journal: Phys. Rev. X 5, 011004 (2015)Interna...
Active matter, comprising many active agents interacting and moving in fluids or more complex enviro...
Active matter, comprising many active agents interacting and moving in fluids or more complex enviro...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active colloids, which can be thought of as the synthetic analog of swimming bacteria, exhibit remar...
One characteristic feature of life is to convert energy from one form to another to perform function...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
The collective mobility of active matter (self-propelled objects that transduce energy into mechanic...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
Catalytically active colloids maintain nonequilibrium conditions in which they produce and deplete c...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
In this thesis, I present numerical simulations that explore the applications of self-propelled part...