Phase behavior of a system of particles with core collapse
arXiv:cond-mat/9805059 · doi:10.1103/PhysRevE.58.1478
Abstract
The pressure-temperature phase diagram of a one-component system, with particles interacting through a spherically symmetric pair potential in two dimensions is studied. The interaction consists of a hard core plus an additional repulsion at low energies. It is shown that at zero temperature, instead of the expected isostructural transition due to core collapse occurring when increasing pressure, the system passes through a series of ground states that are not triangular lattices. In particular, and depending on parameters, structures with squares, chains, hexagons and even quasicrystalline ground states are found. At finite temperatures the solid-fluid coexistence line presents a zone with negative slope (which implies melting with decreasing in volume) and the fluid phase has a temperature of maximum density, similar to that in water.
11 pages, 15 figures included. To appear in PRE. Some figures in low quality format. Better ones available upon request from [email protected]
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