The structural and energetic properties of [100] and [110] steps on the (001) surface of fcc metal have been determined by T = 0 atomistic simulations. The interactions between [100] steps and between [110] steps on the (001) surface are determined from the surface energy of a series of (01 n) and (11m) surfaces, respectively. For step spacings larger than three fcc lattice parameters (R > 3a0), we find that the interaction energy between two similar steps on the (001) surface can be reasonably represented by the functional form R-2, in agreement with the prediction of a simple linear elastic analysis based upon a line dipole force model of a step. However, we observe qualitative differences between the displacement fields determined by ...
We present an analytical, elastic analysis for the energy and relaxation of stepped surfaces. The an...
In this work, we show that by using the density functional approach, in which the electronic degrees...
Using both density-functional theory calculations and Monte Carlo simulations, we compute various ke...
Atomistic computer simulations are used to study the zero-temperature interaction between steps in v...
International audienceWe have studied the energetics, relaxation and interactions of steps on the Au...
International audienceWe have studied the step–step interactions on the Pt(997) vicinal surface. Gra...
We expose a new analytical method for computing elastic displacements and interactions due to steps ...
Using ab initio total energy calculations we have studied the relation between the step atomic confi...
We have studied by grazing incidence x-ray diffraction the atomic positions near the surface of Cu(2...
Using both density-functional theory calculations and Monte Carlo simulations, we compute various ke...
In this thesis, we study the anisotropy of step stiffness: an important parameter describing the flu...
AbstractStrain has significance for both the growth characteristics and material properties of thin ...
Using total energy calculations, based on interaction potentials from the embedded atom method, we s...
Using SSH model for the step structure of crystal surfaces, a strictly attractive 1/l2 energy, which...
The influences of surface step state and temperature on the elastic limit for dislocation nucleation...
We present an analytical, elastic analysis for the energy and relaxation of stepped surfaces. The an...
In this work, we show that by using the density functional approach, in which the electronic degrees...
Using both density-functional theory calculations and Monte Carlo simulations, we compute various ke...
Atomistic computer simulations are used to study the zero-temperature interaction between steps in v...
International audienceWe have studied the energetics, relaxation and interactions of steps on the Au...
International audienceWe have studied the step–step interactions on the Pt(997) vicinal surface. Gra...
We expose a new analytical method for computing elastic displacements and interactions due to steps ...
Using ab initio total energy calculations we have studied the relation between the step atomic confi...
We have studied by grazing incidence x-ray diffraction the atomic positions near the surface of Cu(2...
Using both density-functional theory calculations and Monte Carlo simulations, we compute various ke...
In this thesis, we study the anisotropy of step stiffness: an important parameter describing the flu...
AbstractStrain has significance for both the growth characteristics and material properties of thin ...
Using total energy calculations, based on interaction potentials from the embedded atom method, we s...
Using SSH model for the step structure of crystal surfaces, a strictly attractive 1/l2 energy, which...
The influences of surface step state and temperature on the elastic limit for dislocation nucleation...
We present an analytical, elastic analysis for the energy and relaxation of stepped surfaces. The an...
In this work, we show that by using the density functional approach, in which the electronic degrees...
Using both density-functional theory calculations and Monte Carlo simulations, we compute various ke...