Active matter has been much studied for its intriguing properties such as collective motion, motility-induced phase separation and giant fluctuations. However, it has remained unclear how the states of active materials connect with the equilibrium phases. For two-dimensional systems, this is also because the understanding of the liquid, hexatic, and solid equilibrium phases and their phase transitions is recent. Here we show that two-dimensional self-propelled point particles with inverse-power-law repulsions moving with a kinetic Monte Carlo algorithm without alignment interactions preserve all equilibrium phases up to very large activities. Furthermore, at high activity within the liquid phase, a critical point opens up a gas-liquid motil...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
International audienceActive matter has been much studied for its intriguing properties such as coll...
International audienceWe study non-equilibrium phases for interacting two-dimensional self-propelled...
Although nature is three-dimensional, lower dimensional systems are often effectively realized offer...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
Melting of two-dimensional (2D) equilibrium crystals, from superconducting vortex lattices to colloi...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
We demonstrate that there is a macroscopic coexistence between regions with hexatic order and region...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Recent investigations of the phase diagram of spherical, purely repulsive, active particles establis...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
© 2021, The Author(s), under exclusive licence to Springer Nature Limited.Studies of active matter, ...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
International audienceActive matter has been much studied for its intriguing properties such as coll...
International audienceWe study non-equilibrium phases for interacting two-dimensional self-propelled...
Although nature is three-dimensional, lower dimensional systems are often effectively realized offer...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
Melting of two-dimensional (2D) equilibrium crystals, from superconducting vortex lattices to colloi...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
We demonstrate that there is a macroscopic coexistence between regions with hexatic order and region...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Recent investigations of the phase diagram of spherical, purely repulsive, active particles establis...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
© 2021, The Author(s), under exclusive licence to Springer Nature Limited.Studies of active matter, ...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
The defining feature of active matter, self-propulsion requires constant consumption of energy to be...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...