Metallic osmium (Os) is one of the most exceptional elemental materials, having, at ambient pressure, the highest known density and one of the highest cohesive energies and melting temperatures1. It is also very incompressible2, 3, 4, but its high-pressure behaviour is not well understood because it has been studied2, 3, 4, 5, 6 so far only at pressures below 75 gigapascals. Here we report powder X-ray diffraction measurements on Os at multi-megabar pressures using both conventional and double-stage diamond anvil cells7, with accurate pressure determination ensured by first obtaining self-consistent equations of state of gold, platinum, and tungsten in static experiments up to 500 gigapascals. These measurements allow us to show that Os ret...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
Angle-dispersive x-ray powder diffraction experiments have been performed on neodymium metal to a pr...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
Metallic osmium (Os) is one of the most exceptional elemental materials, having, at ambient pressure...
Metallic osmium (Os) is one of the most exceptional elemental materials, having, at ambient pressure...
High-resolution x-ray diffraction with diamond-anvil cells, using argon as a quasi-hydrostatic press...
International audienceWe have measured the isothermal equation of state (EOS) of osmium to 75 GPa un...
Nonhydrostatic compression behavior of osmium (Os) was investigated up to 58.2 GPa using radial X-r...
The equation of states, electronic and phonon band structure, Fermi surface, and transport propertie...
Osmium, the least compressible metal, has recently been observed to undergo abrupt changes in the c/...
On the basis of high pressure diamond-anvil compression studies for the precious metals Ru, Ir, and ...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
Angle-dispersive x-ray powder diffraction experiments have been performed on neodymium metal to a pr...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
Metallic osmium (Os) is one of the most exceptional elemental materials, having, at ambient pressure...
Metallic osmium (Os) is one of the most exceptional elemental materials, having, at ambient pressure...
High-resolution x-ray diffraction with diamond-anvil cells, using argon as a quasi-hydrostatic press...
International audienceWe have measured the isothermal equation of state (EOS) of osmium to 75 GPa un...
Nonhydrostatic compression behavior of osmium (Os) was investigated up to 58.2 GPa using radial X-r...
The equation of states, electronic and phonon band structure, Fermi surface, and transport propertie...
Osmium, the least compressible metal, has recently been observed to undergo abrupt changes in the c/...
On the basis of high pressure diamond-anvil compression studies for the precious metals Ru, Ir, and ...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The influence of pressure on the electronic structure of Os has attracted substantial attention rece...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...
Angle-dispersive x-ray powder diffraction experiments have been performed on neodymium metal to a pr...
The 5d transition metals have attracted specific interest for high-pressure studies due to their ext...