The ability of the phase-field-crystal (PFC) model to quantitatively predict atomistic defect structures in crystalline solids is addressed. First, general aspects of the PFC model are discussed within the context of obtaining quantitative results in solid materials. Then a specific example is used to illustrate major points. Specifically, accelerated molecular dynamics is used to compute the one-particle probability density rho((1))(r) in a complex atomistic defect consisting of a Lomer dislocation with an equilibrium distribution of vacancies in the core, and the results are considered within the general framework of the PFC model. As expected,.(1)(r) shows numerous spatially localized peaks with integrated densities smaller than unity, a...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Phase field crystals (PFC) are a tool for simulating materials at the atomic level. They combine the...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
Here we review the basic concepts and applications of the phase-field-crystal (PFC) method, which is...
© 2016 American Physical Society. We extend the phase field crystal (PFC) framework to quantitative ...
Phase field crystal (PFC) theory is extensively used for modelling the phase behaviour, structure, t...
Here, we review the basic concepts and applications of the phase-field-crystal (PFC) method, which i...
Phase-field crystals (PFC) is an atomistic model on diffusive time scale with the capability to simu...
Phase-field crystals (PFC) is an atomistic model on diffusive time scale with the capability to simu...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
Phase field crystal (PFC) theory is extensively used for modeling the phase behavior, structure, the...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Phase field crystal (PFC) theory is extensively used for modeling the phase behavior, structure, the...
Dynamic processes in nonequilibrium liquid-solid systems are studied over mesoscopic time scales and...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Phase field crystals (PFC) are a tool for simulating materials at the atomic level. They combine the...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...
Here we review the basic concepts and applications of the phase-field-crystal (PFC) method, which is...
© 2016 American Physical Society. We extend the phase field crystal (PFC) framework to quantitative ...
Phase field crystal (PFC) theory is extensively used for modelling the phase behaviour, structure, t...
Here, we review the basic concepts and applications of the phase-field-crystal (PFC) method, which i...
Phase-field crystals (PFC) is an atomistic model on diffusive time scale with the capability to simu...
Phase-field crystals (PFC) is an atomistic model on diffusive time scale with the capability to simu...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
Phase field crystal (PFC) theory is extensively used for modeling the phase behavior, structure, the...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Phase field crystal (PFC) theory is extensively used for modeling the phase behavior, structure, the...
Dynamic processes in nonequilibrium liquid-solid systems are studied over mesoscopic time scales and...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The energetics and kinetics of interactions between microstructural point, line, and planar defects ...
Phase field crystals (PFC) are a tool for simulating materials at the atomic level. They combine the...
Rapid solidification leads to unique microstructural features, where a less studied topic is the for...