A combination of in situ high-pressure neutron diffraction at pressures up to 17.5(5) GPa and molecular dynamics simulations employing a many-body interatomic potential model is used to investigate the structure of cold-compressed silica glass. The simulations give a good account of the neutron diffraction results and of existing x-ray diffraction results at pressures up to ∼60 GPa. On the basis of the molecular dynamics results, an atomistic model for densification is proposed in which rings are “zipped” by a pairing of five- and/or sixfold coordinated Si sites. The model gives an accurate description for the dependence of the mean primitive ring size ⟨n⟩ on the mean Si-O coordination number, thereby linking a parameter that is sensitive t...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
The method of in situ high-pressure neutron diffraction is used to investigate the structure of B2O3...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
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...
International audienceA combination of in situ high-pressure neutron diffraction at pressures up to ...
The structure of GeO2 glass was investigated at pressures up to 17.5(5) GPa using in situ time-of-fl...
The broken symmetry in the atomic-scale ordering of glassy versus crystalline solids leads to a daun...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
We investigated the structure of SiO2 glass up to 172 GPa using high-energy X-ray diffraction. The c...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
The structure of hydrous amorphous SiO2 is fundamental in order to investigate the effects of water ...
Molecular dynamics simulations of fused silica at shock pressures reproduce the experimental equatio...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
The method of in situ high-pressure neutron diffraction is used to investigate the structure of B2O3...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
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...
International audienceA combination of in situ high-pressure neutron diffraction at pressures up to ...
The structure of GeO2 glass was investigated at pressures up to 17.5(5) GPa using in situ time-of-fl...
The broken symmetry in the atomic-scale ordering of glassy versus crystalline solids leads to a daun...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
We investigated the structure of SiO2 glass up to 172 GPa using high-energy X-ray diffraction. The c...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
There is an increasing interest in the structural modifications found in liquids and amorphous syste...
The structure of hydrous amorphous SiO2 is fundamental in order to investigate the effects of water ...
Molecular dynamics simulations of fused silica at shock pressures reproduce the experimental equatio...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...
The method of in situ high-pressure neutron diffraction is used to investigate the structure of B2O3...
The magnesium silicate system is an important geophysical analogue and neutron diffraction data from...