The success of spectroscopy to characterise equilibrium fluids, for example the heat capacity ratio, suggests a parallel approach for active fluids. Here, we start from a hydrodynamic description of chiral active fluids composed of spinning constituents and derive their low-frequency, long-wavelength response functions using the Kadanoff-Martin formalism. We find that the presence of odd (equivalently, Hall) viscosity leads to mixed density-vorticity response even at linear order. Such response, prohibited in time-reversal-invariant fluids, is a large-scale manifestation of the microscopic breaking of time-reversal symmetry. Our work suggests possible experimental probes that can measure anomalous transport coefficients in active fluids thr...
We study in this work the 2D dynamics of an experimental system of disk-shaped rotors, fluidized by ...
Chiral active matter is enjoying a rapid increase of interest, spurred by the rich variety of asymme...
Diffusion is a fundamental aspect of transport processes in biological systems, and thus, in the dev...
The success of spectroscopy to characterize equilibrium fluids, for example the heat-capacity ratio,...
Odd viscosity arises in systems with time reversal symmetry breaking, which creates non-dissipative ...
The Lorentz reciprocal theorem -- that is used to study various transport phenomena in hydrodynamics...
Some nonequilibrium systems exhibit anomalous suppression of the large-scale density fluctuations, s...
Active fluids, which are driven at the microscale by non-conservative forces, are known to exhibit n...
Understanding how chiral active particles -- which self-propel and self-rotate -- interact with each...
We characterize a system of hard spheres with a simple collision rule that breaks time reversal symm...
In equilibrium liquid crystals, chirality leads to a variety of spectacular three-dimensional struct...
We consider plane wave modes in ultracold, but not quantum degenerate, dipolar Fermi gases in the hy...
By the hydrodynamic linear response theory, dynamical correlation functions decay as power laws alon...
Active fluids and growing interfaces are two well-studied but very different non-equilibrium systems...
In this thesis, I present work pertaining to the continuum modeling of active fluids. The main resul...
We study in this work the 2D dynamics of an experimental system of disk-shaped rotors, fluidized by ...
Chiral active matter is enjoying a rapid increase of interest, spurred by the rich variety of asymme...
Diffusion is a fundamental aspect of transport processes in biological systems, and thus, in the dev...
The success of spectroscopy to characterize equilibrium fluids, for example the heat-capacity ratio,...
Odd viscosity arises in systems with time reversal symmetry breaking, which creates non-dissipative ...
The Lorentz reciprocal theorem -- that is used to study various transport phenomena in hydrodynamics...
Some nonequilibrium systems exhibit anomalous suppression of the large-scale density fluctuations, s...
Active fluids, which are driven at the microscale by non-conservative forces, are known to exhibit n...
Understanding how chiral active particles -- which self-propel and self-rotate -- interact with each...
We characterize a system of hard spheres with a simple collision rule that breaks time reversal symm...
In equilibrium liquid crystals, chirality leads to a variety of spectacular three-dimensional struct...
We consider plane wave modes in ultracold, but not quantum degenerate, dipolar Fermi gases in the hy...
By the hydrodynamic linear response theory, dynamical correlation functions decay as power laws alon...
Active fluids and growing interfaces are two well-studied but very different non-equilibrium systems...
In this thesis, I present work pertaining to the continuum modeling of active fluids. The main resul...
We study in this work the 2D dynamics of an experimental system of disk-shaped rotors, fluidized by ...
Chiral active matter is enjoying a rapid increase of interest, spurred by the rich variety of asymme...
Diffusion is a fundamental aspect of transport processes in biological systems, and thus, in the dev...