Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must be added in order to capture thermal fluctuations. In almost all cases, the resulting coarse-grained stochastic partial differential equations carry a short-scale cutoff, which is also reflected in numerical discretisation schemes. We draw together our recent findings concerning the construction of such schemes and the interpretation of their continuum limits, focusing, for simplicity, on models with a purely diffusive scalar field, such as ‘Model B’ which describes phase separation in binary fluid mixtures. We address the requirement that the steady-state entropy production rate (EPR) must vanish for any stochastic hydrodynamic model in a th...
peer reviewedActive-matter systems operate far from equilibrium because of the continuous energy inj...
A nonlinear diffusion approximation for a previously derived master equation describing an inhomogen...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
peer reviewedActive-matter systems operate far from equilibrium because of the continuous energy inj...
A nonlinear diffusion approximation for a previously derived master equation describing an inhomogen...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Many complex fluids can be described by continuum hydrodynamic field equations, to which noise must ...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Fluctuating entropy production is studied for a set of linearly coupled complex fields. The general ...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...
Active-matter systems operate far from equilibrium because of the continuous energy injection at the...
We develop numerical methods for stochastic reaction-diffusion systems based on approaches used for ...
peer reviewedActive-matter systems operate far from equilibrium because of the continuous energy inj...
A nonlinear diffusion approximation for a previously derived master equation describing an inhomogen...
International audienceActive-matter systems operate far from equilibrium because of the continuous e...