In this work we review our new methods to computer generate amorphous atomic topologies of several binary alloys: SiH, SiN, CN; binary systems based on group IV elements like SiC; the GeSe chalcogenide; aluminum-based systems: AlN and AlSi, and the CuZr amorphous alloy. We use an ab initio approach based on density functionals and computationally thermally-randomized periodically-continued cells with at least 108 atoms. The computational thermal process to generate the amorphous alloys is the undermelt-quench approach, or one of its variants, that consists in linearly heating the samples to just below their melting (or liquidus) temperatures, and then linearly cooling them afterwards. These processes are carried out from initial crystalline...
Molecular dynamics computer simulations on three intermetallic compounds, Cu,Au, Ni,AI and NiAl, hav...
International audienceFirst-principles molecular dynamics is employed to describe the atomic structu...
We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris func...
The subject of this thesis is the class of materials known as disordered solids. These solids are al...
We present an information-based total-energy optimization method to produce nearly defect-free struc...
The atomistic modeling of amorphous materials requires structure sizes and sampling statistics that ...
A thermal procedure and an ab initio molecular-dynamics method based on the Harris functional, appli...
We apply a method called force-enhanced atomic refinement (FEAR) ot create a computer model of amo...
Using a recently developed ab initio molecular dynamics method based on the Harris functional to amo...
The thesis describes modelling studies of amorphous, or non-crystalline, materials. It is split into...
We have simulated, by ab initio molecular dynamics (MD), the entire phase-change (PC) cycle in Ge-Sb...
Amorphous materials represent a large and diverse family, with many questions still remaining unansw...
A first step towards a computational Si–O–P angles, respectively. Other geometrical featur...
International audienceThe art of deriving classical potential consists in finding the correct balanc...
Amorphous silicon (a-Si) is a widely studied noncrystalline material, and yet the subtle details of ...
Molecular dynamics computer simulations on three intermetallic compounds, Cu,Au, Ni,AI and NiAl, hav...
International audienceFirst-principles molecular dynamics is employed to describe the atomic structu...
We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris func...
The subject of this thesis is the class of materials known as disordered solids. These solids are al...
We present an information-based total-energy optimization method to produce nearly defect-free struc...
The atomistic modeling of amorphous materials requires structure sizes and sampling statistics that ...
A thermal procedure and an ab initio molecular-dynamics method based on the Harris functional, appli...
We apply a method called force-enhanced atomic refinement (FEAR) ot create a computer model of amo...
Using a recently developed ab initio molecular dynamics method based on the Harris functional to amo...
The thesis describes modelling studies of amorphous, or non-crystalline, materials. It is split into...
We have simulated, by ab initio molecular dynamics (MD), the entire phase-change (PC) cycle in Ge-Sb...
Amorphous materials represent a large and diverse family, with many questions still remaining unansw...
A first step towards a computational Si–O–P angles, respectively. Other geometrical featur...
International audienceThe art of deriving classical potential consists in finding the correct balanc...
Amorphous silicon (a-Si) is a widely studied noncrystalline material, and yet the subtle details of ...
Molecular dynamics computer simulations on three intermetallic compounds, Cu,Au, Ni,AI and NiAl, hav...
International audienceFirst-principles molecular dynamics is employed to describe the atomic structu...
We propose a method to simulate a-Si and a-Si:H using an ab initio approach based on the Harris func...