We discuss the phase behaviour of spherical hard-core particles, with an attractive potential, as described by a hard-core Yukawa model. The ratio of the range of the attraction to the diameter of the particles is an important control parameter of the problem. Upon decreasing the range of the attraction, the phase diagram changes quite significantly, with the liquid-gas transition becoming metastable, and the crystal being in equilibrium with the fluid, with no intervening liquid. We also study the glass transition lines and, crucially, find that the situation, being very simple for pure repulsive potentials, becomes much richer in competition between glass and crystal phases for short-range attractions. Also a transition between attractive...
Soft matter systems often exhibit an intriguing morphology, related to the formation of intermediate...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
We evaluate the phase diagram of the four-site Kern-Frenkel patchy particle model [Kern, N.; Frenkel...
We have studied a model of a complex fluid consisting of particles interacting through a hard-core a...
We have studied a model of a complex fluid consisting of particles interacting through a hard-core a...
The phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often inte...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often interpre...
phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often interpre...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
Soft matter systems often exhibit an intriguing morphology, related to the formation of intermediate...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
We evaluate the phase diagram of the four-site Kern-Frenkel patchy particle model [Kern, N.; Frenkel...
We have studied a model of a complex fluid consisting of particles interacting through a hard-core a...
We have studied a model of a complex fluid consisting of particles interacting through a hard-core a...
The phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often inte...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often interpre...
phase behavior of colloid-polymer mixtures, and of solutions of globular proteins, is often interpre...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
We report on a large scale computer simulation study of crystal nucleation in hard spheres. Through ...
We investigate the competition between glass formation and crystallization of open tetrahedral struc...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
The free energy landscape responsible for crystallization can be complex even for relatively simple ...
Soft matter systems often exhibit an intriguing morphology, related to the formation of intermediate...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
We evaluate the phase diagram of the four-site Kern-Frenkel patchy particle model [Kern, N.; Frenkel...