International audienceThe structure of glassy GeS2 is studied in the framework of density functional theory, by using a fully self-consistent first-principles molecular dynamics (FPMD) scheme. A comparative analysis is performed with previous molecular dynamics data obtained within the Harris functional (HFMD) total energy approach. The calculated total neutron structure factor exhibits an unprecedented agreement with the experimental counterpart. In particular, the height of the first sharp diffraction peak (FSDP) improves considerably upon the HFMD results. Both the Ge and the S subnetworks are affected by a consistent number of miscoordinations, coexisting with the main tetrahedral structural motif. Glassy GeS2 features a short-range ord...
We provide an overview of what has been accomplished by our team, since 1998, in the area of first-p...
International audienceFirst-principles molecular dynamics have been employed to highlight th...
International audienceThe evolution in structure of the prototypical network-forming glass GeSe2 is ...
International audienceThe structure of glassy GeS2 is studied in the framework of density functional...
International audienceThe structure of glassy GeS2 is studied in the framework of density functional...
The structure of glassy GeS[subscript 2] is studied in the framework of density functional theory, b...
The structural properties of glassy Ge2Se3 were studied in the framework of first-principles molecul...
By using first-principle molecular dynamics within density functional theory, we study the structura...
International audienceFirst-principles calculations within the framework of the density functional t...
The evolution in structure of the prototypical network-forming glass GeSe2 is investigated at pressu...
First-principles calculations within the framework of the density functional theory are used to cons...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
Using a density-functional scheme, we study the structural and vibrational properties of vitreous ge...
We provide an overview of what has been accomplished by our team, since 1998, in the area of first-p...
International audienceFirst-principles molecular dynamics have been employed to highlight th...
International audienceThe evolution in structure of the prototypical network-forming glass GeSe2 is ...
International audienceThe structure of glassy GeS2 is studied in the framework of density functional...
International audienceThe structure of glassy GeS2 is studied in the framework of density functional...
The structure of glassy GeS[subscript 2] is studied in the framework of density functional theory, b...
The structural properties of glassy Ge2Se3 were studied in the framework of first-principles molecul...
By using first-principle molecular dynamics within density functional theory, we study the structura...
International audienceFirst-principles calculations within the framework of the density functional t...
The evolution in structure of the prototypical network-forming glass GeSe2 is investigated at pressu...
First-principles calculations within the framework of the density functional theory are used to cons...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
International audienceThe amorphous structure of the phase change material Ge2Sb2Te5 (GST) has been ...
Using a density-functional scheme, we study the structural and vibrational properties of vitreous ge...
We provide an overview of what has been accomplished by our team, since 1998, in the area of first-p...
International audienceFirst-principles molecular dynamics have been employed to highlight th...
International audienceThe evolution in structure of the prototypical network-forming glass GeSe2 is ...