scholarly journals Stability and mobility of tungsten clusters on tungsten (110) surface: Ab initio and atomistic simulations

2021 ◽  
Vol 707 ◽  
pp. 121806
Author(s):  
L. Yang ◽  
D. Perez ◽  
B.D. Wirth
Author(s):  
Yaolong Zhang ◽  
Ce Hu ◽  
Bin Jiang

Combining piecewise switching functions with embedded atom neural networks to accelerate atomistic simulations with ab initio accuracy.


2015 ◽  
Vol 118 (2) ◽  
pp. 025101 ◽  
Author(s):  
G. Berdiyorov ◽  
K. Harrabi ◽  
U. Mehmood ◽  
F. M. Peeters ◽  
N. Tabet ◽  
...  

2021 ◽  
pp. 2100217
Author(s):  
Joakim Brorsson ◽  
Arsalan Hashemi ◽  
Zheyong Fan ◽  
Erik Fransson ◽  
Fredrik Eriksson ◽  
...  

2008 ◽  
Vol 139 ◽  
pp. 107-112 ◽  
Author(s):  
Frédéric Soisson ◽  
Chu Chun Fu

We present Monte Carlo simulations of the first stages of the coherent precipitation of Cu in α-Fe during thermal ageing and under irradiation. The simulations are based on a diffusion model by vacancy and self-interstitial jumps, the parameters of which are fitted on ab initio calculations. The simulations of precipitation kinetics during thermal ageing are compared with experimental ones. They reveal that precipitates containing up to several tens of atoms can be much more mobile than individual copper atoms, due to the trapping of vacancies in Cu. Monte Carlo simulations are also used to analyze the coupling between fluxes of point defects and Cu which occurs under irradiation and the possible resulting radiation induced segregation phenomena.


2001 ◽  
Vol 539 (1-3) ◽  
pp. 191-197 ◽  
Author(s):  
K.C. Mundim ◽  
L.A.C. Malbouisson ◽  
S. Dorfman ◽  
D. Fuks ◽  
J. Van Humbeeck ◽  
...  

1999 ◽  
Vol 06 (05) ◽  
pp. 705-718 ◽  
Author(s):  
DAVID FUKS ◽  
KLEBER MUNDIM ◽  
VLAD LIUBICH ◽  
SIMON DORFMAN

We perform the atomistic simulations of the properties of the Σ3< 111> grain boundary in W and demonstrate the influence of boron additive on the resistance of the grain boundary with respect to different shifts. The interatomic potentials used in these simulations are obtained from ab initio total energy calculations. These calculations are carried out in the framework of density functional theory in the coherent potential approximation. The recursion procedure to extract A–B type interatomic potentials is suggested.


Author(s):  
Xudong Weng ◽  
O.F. Sankey ◽  
Peter Rez

Single electron band structure techniques have been applied successfully to the interpretation of the near edge structures of metals and other materials. Among various band theories, the linear combination of atomic orbital (LCAO) method is especially simple and interpretable. The commonly used empirical LCAO method is mainly an interpolation method, where the energies and wave functions of atomic orbitals are adjusted in order to fit experimental or more accurately determined electron states. To achieve better accuracy, the size of calculation has to be expanded, for example, to include excited states and more-distant-neighboring atoms. This tends to sacrifice the simplicity and interpretability of the method.In this paper. we adopt an ab initio scheme which incorporates the conceptual advantage of the LCAO method with the accuracy of ab initio pseudopotential calculations. The so called pscudo-atomic-orbitals (PAO's), computed from a free atom within the local-density approximation and the pseudopotential approximation, are used as the basis of expansion, replacing the usually very large set of plane waves in the conventional pseudopotential method. These PAO's however, do not consist of a rigorously complete set of orthonormal states.


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