Funder: Cambridge Commonwealth, European and International Trust; doi: http://dx.doi.org/10.13039/501100003343Funder: The Jardine FoundationFunder: Royal Society (GB)Abstract: Non-equilibrium phase separating systems with reactions, such as biomolecular condensates and bacteria colonies, can break time-reversal symmetry (TRS) in two distinct ways. Firstly, the conservative and non-conservative sectors of the dynamics can be governed by incompatible free energies; when both sectors are present, this is the leading-order TRS violation, captured in its simplest form by ‘Model AB’. Second, the diffusive dynamics can break TRS in its own right. This happens only at higher order in the gradient expansion (but is the leading behaviour without reac...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
We theoretically study mixtures of chemically interacting particles, which produce or consume a chem...
The formation of biomolecular condensates through liquid-liquid phase separation from proteins and n...
Funder: Cambridge Commonwealth, European and International Trust; doi: http://dx.doi.org/10.13039/50...
Funder: The Jardine FoundationFunder: Royal SocietyFunder: Cambridge Commonwealth, European and Inte...
Materials undergoing both phase separation and chemical reactions (defined here as all processes tha...
Nonmotile active matter exhibits a wide range of nonequilibrium collective phenomena yet examples ar...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Non-motile active matter exhibits a wide range of non-equilibrium collective phenomena yet examples ...
International audienceWe consider a dynamical field theory (Active Model B+) that minimally extends ...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
Spontaneous liquid-liquid phase separation is commonly understood in terms of phenomenological mean-...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
We theoretically study mixtures of chemically interacting particles, which produce or consume a chem...
The formation of biomolecular condensates through liquid-liquid phase separation from proteins and n...
Funder: Cambridge Commonwealth, European and International Trust; doi: http://dx.doi.org/10.13039/50...
Funder: The Jardine FoundationFunder: Royal SocietyFunder: Cambridge Commonwealth, European and Inte...
Materials undergoing both phase separation and chemical reactions (defined here as all processes tha...
Nonmotile active matter exhibits a wide range of nonequilibrium collective phenomena yet examples ar...
Biomolecular condensates in cells are often rich in catalytically active enzymes. This is particular...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Non-motile active matter exhibits a wide range of non-equilibrium collective phenomena yet examples ...
International audienceWe consider a dynamical field theory (Active Model B+) that minimally extends ...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
All living things are driven by chemical reactions. Reactions provide energy and transform matter. T...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
Spontaneous liquid-liquid phase separation is commonly understood in terms of phenomenological mean-...
Phase separation is the thermodynamic process that explains how droplets form in multicomponent flui...
We theoretically study mixtures of chemically interacting particles, which produce or consume a chem...
The formation of biomolecular condensates through liquid-liquid phase separation from proteins and n...