We report numerical results for the phase diagram in the density-disorder plane of a hard-sphere system in the presence of quenched, random, pinning disorder. Local minima of a discretized version of the Ramakrishnan-Yussouff free energy functional are located numerically and their relative stability is studied as a function of the density and the strength of disorder. Regions in the phase diagram corresponding to liquid, glassy, and nearly crystalline states are mapped out, and the nature of the transitions is determined. The liquid to glass transition changes from first to second order as the strength of the disorder is increased. For weak disorder, the system undergoes a first-order crystallization transition as the density is increased....
The XY model with quenched random disorder is studied numerically at T=0 by a defect scaling method ...
We study the thermodynamic and structural properties of the superconducting vortex system in hightem...
We introduce an approach to derive an effective scalar field theory for the glass transition; the fl...
We report numerical results for the phase diagram in the density-disorder plane of a hard-sphere sys...
We report numerical results for the phase diagram in the density-disorder plane of a hard-sphere sys...
The phase diagram of a hard-sphere fluid in the presence of a random pinning potential is studied an...
We consider the phase diagram of a classical fluid in the presence of a random pinning potential of a...
The phase diagram of a polydisperse hard-sphere system is examined by numerical minimization of a di...
We consider the phase diagram of a classical fluid in the presence of a random pinning potential of ...
The three dimensional XY model with quenched random disorder and finite screening is studied. We arg...
We study the thermodynamic and structural properties of the superconducting vortex system in high-te...
Phase transitions and their critical scaling properties, especially in systems with disorder, are im...
We present the results of a detailed investigation of the low-temperature properties of the vortex s...
The XY model with quenched random disorder is studied numerically at T = 0 by a defect scaling metho...
The XY model with quenched random disorder is studied numerically at T=0 by a defect scaling method ...
We study the thermodynamic and structural properties of the superconducting vortex system in hightem...
We introduce an approach to derive an effective scalar field theory for the glass transition; the fl...
We report numerical results for the phase diagram in the density-disorder plane of a hard-sphere sys...
We report numerical results for the phase diagram in the density-disorder plane of a hard-sphere sys...
The phase diagram of a hard-sphere fluid in the presence of a random pinning potential is studied an...
We consider the phase diagram of a classical fluid in the presence of a random pinning potential of a...
The phase diagram of a polydisperse hard-sphere system is examined by numerical minimization of a di...
We consider the phase diagram of a classical fluid in the presence of a random pinning potential of ...
The three dimensional XY model with quenched random disorder and finite screening is studied. We arg...
We study the thermodynamic and structural properties of the superconducting vortex system in high-te...
Phase transitions and their critical scaling properties, especially in systems with disorder, are im...
We present the results of a detailed investigation of the low-temperature properties of the vortex s...
The XY model with quenched random disorder is studied numerically at T = 0 by a defect scaling metho...
The XY model with quenched random disorder is studied numerically at T=0 by a defect scaling method ...
We study the thermodynamic and structural properties of the superconducting vortex system in hightem...
We introduce an approach to derive an effective scalar field theory for the glass transition; the fl...