In this thesis, I present work pertaining to the continuum modeling of active fluids. The main results are as follows. I derive Green-Kubo equations for the components of the viscosity in two-dimensional fluids with and without internal angular momentum. These equations illustrate the connection between the breaking of time-reversal symmetry at the microscopic level and the emergence of odd viscosity, a non-dissipative transport coefficient. They also show the potential for a new, previously unconsidered rotational viscosity in fluids in which internal spin couples to velocity. By numerically verifying the Green-Kubo equation for odd viscosity, we provide support for the use of the Onsager regression hypothesis in its derivation, where this...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active particles contain internal degrees of freedom with the ability to take in and dissipate energ...
We review the general hydrodynamic theory of active soft materials that is motivated in particular b...
In this thesis, I present work pertaining to the continuum modeling of active fluids. The main resul...
Active fluids, which are driven at the microscale by non-conservative forces, are known to exhibit n...
We perform a coarse-graining analysis of the paradigmatic active matter model, active Brownian parti...
The equations of hydrodynamics including mass, linear momentum, angular momentum, and energy are der...
We address the question of how interacting active systems in a nonequilibrium steady state respond t...
Active particles contain internal degrees of freedom with the ability to take in and dissipate energ...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
We study the rheological signatures of departure from equilibrium in two-dimensional viscous fluids ...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
We derive the hydrodynamics for a system ofNactive, spherical, underdamped particles,interacting thr...
An active particle converts energy to motion. An active suspension is a population of active particl...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active particles contain internal degrees of freedom with the ability to take in and dissipate energ...
We review the general hydrodynamic theory of active soft materials that is motivated in particular b...
In this thesis, I present work pertaining to the continuum modeling of active fluids. The main resul...
Active fluids, which are driven at the microscale by non-conservative forces, are known to exhibit n...
We perform a coarse-graining analysis of the paradigmatic active matter model, active Brownian parti...
The equations of hydrodynamics including mass, linear momentum, angular momentum, and energy are der...
We address the question of how interacting active systems in a nonequilibrium steady state respond t...
Active particles contain internal degrees of freedom with the ability to take in and dissipate energ...
Living systems, as well as most physical systems with promise in industry, technology and medicine, ...
We study the rheological signatures of departure from equilibrium in two-dimensional viscous fluids ...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
We derive the hydrodynamics for a system ofNactive, spherical, underdamped particles,interacting thr...
An active particle converts energy to motion. An active suspension is a population of active particl...
Active matter systems are driven out of thermal equilibrium by a lack of generalized Stokes-Einstein...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active particles contain internal degrees of freedom with the ability to take in and dissipate energ...
We review the general hydrodynamic theory of active soft materials that is motivated in particular b...