Free energies, vacancy concentrations and density distribution anisotropies in hard--sphere crystals: A combined density functional and simulation study
arXiv:1009.0613 · doi:10.1103/PhysRevE.82.051404
Abstract
We perform a comparative study of the free energies and the density distributions in hard sphere crystals using Monte Carlo simulations and density functional theory (employing Fundamental Measure functionals). Using a recently introduced technique (Schilling and Schmid, J. Chem. Phys 131, 231102 (2009)) we obtain crystal free energies to a high precision. The free energies from Fundamental Measure theory are in good agreement with the simulation results and demonstrate the applicability of these functionals to the treatment of other problems involving crystallization. The agreement between FMT and simulations on the level of the free energies is also reflected in the density distributions around single lattice sites. Overall, the peak widths and anisotropy signs for different lattice directions agree, however, it is found that Fundamental Measure theory gives slightly narrower peaks with more anisotropy than seen in the simulations. Among the three types of Fundamental Measure functionals studied, only the White Bear II functional (Hansen-Goos and Roth, J. Phys.: Condens. Matter 18, 8413 (2006)) exhibits sensible results for the equilibrium vacancy concentration and a physical behavior of the chemical potential in crystals constrained by a fixed vacancy concentration.
17 pages, submitted to Phys. Rev. E
References in corpus (11)
- Dynamical density functional theory for interacting Brownian particles: stochastic or deterministic?
- Crystallization of hard-sphere glasses
- Precursor-mediated crystallization process in suspensions of hard spheres
- Density functional theory for hard-sphere mixtures: the White-Bear version Mark II
- Dynamical density functional theory for molecular and colloidal fluids: a microscopic approach to fluid mechanics
- Viscoelasticity and shear flow of concentrated, non-crystallizing colloidal suspensions: Comparison with Mode-Coupling Theory
- Monte Carlo simulations of the solid-liquid transition in hard spheres and colloid-polymer mixtures
- Dynamical density functional theory with hydrodynamic interactions and colloids in unstable traps
- Computing absolute free energies of disordered structures by molecular simulation
- Hard sphere fluids in annular wedges: density distributions and depletion potentials
- Properties of non-FCC hard-sphere solids predicted by density functional theory
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- Hard sphere fluids confined between soft repulsive walls: A comparative study using Monte Carlo and density functional methods
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- Free Minimization of the Fundamental Measure Theory Functional: Freezing of Parallel Hard Squares and Cubes
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- The Primitive Model in Classical Density Functional Theory: Beyond the Standard Mean-Field Approximation
- Anisotropic pair correlations in binary and multicomponent hard-sphere mixtures in the vicinity of a hard wall: A combined density functional theory and simulation study
- Computation of the solid-liquid interfacial free energy in hard spheres by means of thermodynamic integration
- Deriving fundamental measure theory from the virial series: Consistency with the zero-dimensional limit
- Soft repulsive mixtures under gravity: brazil-nut effect, depletion bubbles, boundary layering, nonequilibrium shaking
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- Classical density functional theory for a two-dimensional isotropic ferrogel model with labeled particles
- Stable and metastable hard sphere crystals in Fundamental Measure Theory
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