Phase and vacancy behaviour of hard "slanted" cubes
Publication date
2017-09-28
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Abstract
We use computer simulations to study the phase behaviour for hard, right rhombic prisms as a function of the angle of their rhombic face (the “slant” angle). More specifically, using a combination of eventdriven molecular dynamics simulations, Monte Carlo simulations, and free-energy calculations, we determine and characterize the equilibrium phases formed by these particles for various slant angles and densities. Surprisingly, we find that the equilibrium crystal structure for a large range of slant angles and densities is the simple cubic crystal—despite the fact that the particles do not have cubic symmetry. Moreover, we find that the equilibrium vacancy concentration in this simple cubic phase is extremely high and depends only on the packing fraction and not the particle shape. At higher densities, a rhombic crystal appears as the equilibrium phase. We summarize the phase behaviour of this system by drawing a phase diagram in the slant angle-packing fraction plane.
Keywords
Molecular dynamics, Phase transitions, Crystal structure, Monte Carlo methods, Equations of state
Citation
van Damme, R, van der Meer, B, van den Broeke, J J, Smallenburg, F & Filion, L 2017, 'Phase and vacancy behaviour of hard "slanted" cubes', Journal of Chemical Physics, vol. 147, no. 12, Trans124501. https://doi.org/10.1063/1.5001483