The broken symmetry in the atomic-scale ordering of glassy versus crystalline solids leads to a daunting challenge to provide suitable metrics for describing the order within disorder, especially on length scales beyond the nearest neighbor that are characterized by rich structural complexity. Here, we address this challenge for silica, a canonical network-forming glass, by using hot versus cold compression to (i) systematically increase the structural ordering after densification and (ii) prepare two glasses with the same high-density but contrasting structures. The structure was measured by high-energy X-ray and neutron diffraction, and atomistic models were generated that reproduce the experimental results. The vibrational and thermodyna...
International audienceUsing a truncated BKS interatomic potential, we compare the coordination numbe...
The structure of GeO2 glass was investigated at pressures up to 17.5(5) GPa using in situ time-of-fl...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
International audienceA combination of in situ high-pressure neutron diffraction at pressures up to ...
The structure of silica glass (SiO2) at different densities and at temperatures of 500 K is investig...
The common belief that glass structure is completely frozen-in at room temperature is challenged at ...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
International audienceUsing a truncated BKS interatomic potential, we compare the coordination numbe...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
International audienceUsing a truncated BKS interatomic potential, we compare the coordination numbe...
The structure of GeO2 glass was investigated at pressures up to 17.5(5) GPa using in situ time-of-fl...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
Structural, vibrational, and thermal properties of densified sodium silicate (close to NS2) are inve...
International audienceA combination of in situ high-pressure neutron diffraction at pressures up to ...
The structure of silica glass (SiO2) at different densities and at temperatures of 500 K is investig...
The common belief that glass structure is completely frozen-in at room temperature is challenged at ...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecu...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
International audienceUsing a truncated BKS interatomic potential, we compare the coordination numbe...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...
International audienceUsing a truncated BKS interatomic potential, we compare the coordination numbe...
The structure of GeO2 glass was investigated at pressures up to 17.5(5) GPa using in situ time-of-fl...
We measured the density of vibrational states (DOS) and the specific heat of various glassy and crys...