International audienceThe extraction energy of an aluminum atom is calculated at 0 K as a function of coordination number and defect depth for three surface orientations [(100), (110) and (111)]. For each orientation, atoms are selected and extracted one by one. A linear relationship is obtained between the extraction energy of surface atoms and their coordination numbers (with slight variations due to the geometrical configuration of the atoms). However, the study of the influence of the defect depth on the extraction energy highlights the role played by intrinsic stress on the extraction energy
15 pagesInternational audienceA 3D model for simulating the passivation of iron–chromium alloys has ...
Metals are hugely applied in manufacturing such as aerospace and automobile. The coherent role to un...
The atomic dynamics of decagonal Al-Ni-Co and Al-Cu-Co quasicrystals is inves-tigated by molecular d...
International audienceThe extraction energy of an aluminum atom is calculated at 0 K as a function o...
We have investigated the bulk and surface properties of aluminum using the molecular-dynamics techni...
We have performed molecular dynamics (MD) simulations using the three low index surfaces of Al to de...
We have performed molecular dynamics (MD) simulations using the three low index surfaces of Al to de...
The influence of the number of atoms, N = 3000, 5000, 7000, and 9000 atoms, at temperature T = 300 K...
Nineteen analytic potential energy functions (PEFs) for aluminum (three pairwise additive ones, six ...
The authors have examined the usefulness of the Dagens, Rasolt and Taylor (DRT) interionic potential...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
yesThe DFT calculations are performed to investigate the interactions of hydrogen and carbon atoms w...
We study the effect of macroscopic deformations on the vacancy formation energy in aluminum using el...
15 pagesInternational audienceA 3D model for simulating the passivation of iron–chromium alloys has ...
Metals are hugely applied in manufacturing such as aerospace and automobile. The coherent role to un...
The atomic dynamics of decagonal Al-Ni-Co and Al-Cu-Co quasicrystals is inves-tigated by molecular d...
International audienceThe extraction energy of an aluminum atom is calculated at 0 K as a function o...
We have investigated the bulk and surface properties of aluminum using the molecular-dynamics techni...
We have performed molecular dynamics (MD) simulations using the three low index surfaces of Al to de...
We have performed molecular dynamics (MD) simulations using the three low index surfaces of Al to de...
The influence of the number of atoms, N = 3000, 5000, 7000, and 9000 atoms, at temperature T = 300 K...
Nineteen analytic potential energy functions (PEFs) for aluminum (three pairwise additive ones, six ...
The authors have examined the usefulness of the Dagens, Rasolt and Taylor (DRT) interionic potential...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
Ab initio molecular dynamics is used to study the contribution of a single Al atom to an aluminum br...
yesThe DFT calculations are performed to investigate the interactions of hydrogen and carbon atoms w...
We study the effect of macroscopic deformations on the vacancy formation energy in aluminum using el...
15 pagesInternational audienceA 3D model for simulating the passivation of iron–chromium alloys has ...
Metals are hugely applied in manufacturing such as aerospace and automobile. The coherent role to un...
The atomic dynamics of decagonal Al-Ni-Co and Al-Cu-Co quasicrystals is inves-tigated by molecular d...