In passive fluid-fluid phase separation, a single interfacial tension sets both the capillary fluctuations of the interface and the rate of Ostwald ripening. We show that these phenomena are governed by two different tensions in active systems, and compute the capillary tension σ_cw which sets the relaxation rate of interfacial fluctuations in accordance with capillary wave theory. We discover that strong enough activity can cause negative σ_cw. In this regime, depending on the global composition, the system self-organizes, either into a microphase-separated state in which coalescence is highly inhibited, or into an “active foam” state. Our results are obtained for Active Model B+, a minimal continuum model which, although generic, admits s...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in po...
We look at the surface tension in a binary mixture of two dielectric liquids placed inside a concent...
When a chemical reaction between two immiscible liquids creates surfactant molecules at the interfac...
In passive fluid-fluid phase separation, a single interfacial tension sets both the capillary fluctu...
Active matter is intrinsically out of equilibrium because energy is converted into systematic motion...
Active matter consists of particles that dissipate energy, from their own sources, in the form of me...
We use a continuum model to examine the effect of activity on a phase separating mixture of an exten...
Interfacial tension between immiscible phases is a well-known phenomenon, which manifests itself in ...
A weakly nonlocal phase-field model is used to define surface tension in liquid binary mixtures in t...
Controlling interfaces of phase separating fluid mixtures is key to creating diverse functional soft...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in po...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in p...
This thesis reports on a study of the behaviour and properties of interfaces with an ultralow interf...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in po...
We look at the surface tension in a binary mixture of two dielectric liquids placed inside a concent...
When a chemical reaction between two immiscible liquids creates surfactant molecules at the interfac...
In passive fluid-fluid phase separation, a single interfacial tension sets both the capillary fluctu...
Active matter is intrinsically out of equilibrium because energy is converted into systematic motion...
Active matter consists of particles that dissipate energy, from their own sources, in the form of me...
We use a continuum model to examine the effect of activity on a phase separating mixture of an exten...
Interfacial tension between immiscible phases is a well-known phenomenon, which manifests itself in ...
A weakly nonlocal phase-field model is used to define surface tension in liquid binary mixtures in t...
Controlling interfaces of phase separating fluid mixtures is key to creating diverse functional soft...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in po...
It is known that purely repulsive self-propelled colloids can undergo bulk liquid-vapor phase separa...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in p...
This thesis reports on a study of the behaviour and properties of interfaces with an ultralow interf...
Mixtures of colloids and polymers display a rich phase behavior, involving colloidal gas (rich in po...
We look at the surface tension in a binary mixture of two dielectric liquids placed inside a concent...
When a chemical reaction between two immiscible liquids creates surfactant molecules at the interfac...