Here we review the basic concepts and applications of the phase-field-crystal (PFC) method, which is one of the latest simulation methodologies in materials science for problems, where atomic- and microscales are tightly coupled. The PFC method operates on atomic length and diffusive time scales, and thus constitutes a computationally efficient alternative to molecular simulation methods. Its intense development in materials science started fairly recently following the work by Elder et al. [Phys. Rev. Lett. 88 (2002), p. 245701]. Since these initial studies, dynamical density functional theory and thermodynamic concepts have been linked to the PFC approach to serve as further theoretical fundamentals for the latter. In this review, we summ...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
Here, we review the basic concepts and applications of the phase-field-crystal (PFC) method, which i...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase field crystal (PFC) model is a novel approach for modeling phenomena on atomistic length a...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase-field crystal (PFC) method is known as a relatively new continuum approach for describing ...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
The official published version of the article can be accessed from the link below - Copyright @ 2009...
The ability of the phase-field-crystal (PFC) model to quantitatively predict atomistic defect struct...
The phase field crystal (PFC) model is a novel approach for modeling phenomena on atomistic length a...
We review recent advances made in modeling heteroepitaxy, two-step nucleation, and nucleation at the...
The phase field crystal (PFC) model is a conserved continuum model which isused to investigate the p...
We review recent advances made in modeling heteroepitaxy, two-step nucleation, and nucleation at the...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
Here, we review the basic concepts and applications of the phase-field-crystal (PFC) method, which i...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase field crystal (PFC) model is a novel approach for modeling phenomena on atomistic length a...
Phase-field-crystal (PFC) models constitute a field theoretical approach to solidification, melting,...
The phase-field crystal (PFC) method is known as a relatively new continuum approach for describing ...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...
The official published version of the article can be accessed from the link below - Copyright @ 2009...
The ability of the phase-field-crystal (PFC) model to quantitatively predict atomistic defect struct...
The phase field crystal (PFC) model is a novel approach for modeling phenomena on atomistic length a...
We review recent advances made in modeling heteroepitaxy, two-step nucleation, and nucleation at the...
The phase field crystal (PFC) model is a conserved continuum model which isused to investigate the p...
We review recent advances made in modeling heteroepitaxy, two-step nucleation, and nucleation at the...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
This chapter describes phase-field crystal (PFC) modeling for bridging length scales between electro...
Molecular dynamic simulations, ab initio (DFT) calculations and experimental evidence suggests that ...