The effects of compression on the structural and electronic properties of liquid rubidium are studied along the melting curve by means of a first-principles molecular-dynamics simulation. It is shown that the calculated pair distribution functions g(r) are in good agreement with the experimental results for a wide range of pressures; the liquid rubidium is compressed uniformly at 2.5 GPa, and there exist some deviations from the uniform compression at 6.1 GPa. This structural change to a denser state is related to an electronic s-d transition in the liquid state. It is found that, near the triple point, the electronic density of states consists mostly of the s component and, with increasing pressure, the s component decreases gradually over...
The relations between pair potentials and melting curves at high pressures are inves-tigated and the...
The use of either the Monte Carlo or molecular dynamics method to generate equations-of-state data f...
The method of calculation of the elastic constants up to third order from the energy-strain relation...
The effects of compression on the structural and electronic properties of liquid rubidium are studie...
International audienceAn electronic-driven liquid-liquid phase transition in rubidium is revealed by...
Density-driven phase transformations are a known phenomenon in liquids. Pressure-driven transitions ...
Quantum molecular dynamic simulations were used to examine the change in atomic and electronic struc...
We show that Shaw’s optimized nonlocal model potential (OMP) in combination with the perturbative hy...
Computer modeling of liquid phase poses tremendous challenge: It requires a relatively large simulat...
We have studied the structure of liquid metals at high temperatures and high pressures, i.e., fluid ...
In the high pressure laboratory at BARC, we are pursuing a program to study the behaviour of materia...
With developments in X-ray diffractometry, experimentalists have been able to resolve the complex st...
The influence of the pseudopotential on both the structure and the self-diffusion of liquid rubidium...
Recent neutron scattering results [F. Demmel , Phys. Rev. B 73, 104207 (2006)] on the temperature de...
The high pressure phases of Rb have previously been investigated to 101 GPa, above which Rb is predi...
The relations between pair potentials and melting curves at high pressures are inves-tigated and the...
The use of either the Monte Carlo or molecular dynamics method to generate equations-of-state data f...
The method of calculation of the elastic constants up to third order from the energy-strain relation...
The effects of compression on the structural and electronic properties of liquid rubidium are studie...
International audienceAn electronic-driven liquid-liquid phase transition in rubidium is revealed by...
Density-driven phase transformations are a known phenomenon in liquids. Pressure-driven transitions ...
Quantum molecular dynamic simulations were used to examine the change in atomic and electronic struc...
We show that Shaw’s optimized nonlocal model potential (OMP) in combination with the perturbative hy...
Computer modeling of liquid phase poses tremendous challenge: It requires a relatively large simulat...
We have studied the structure of liquid metals at high temperatures and high pressures, i.e., fluid ...
In the high pressure laboratory at BARC, we are pursuing a program to study the behaviour of materia...
With developments in X-ray diffractometry, experimentalists have been able to resolve the complex st...
The influence of the pseudopotential on both the structure and the self-diffusion of liquid rubidium...
Recent neutron scattering results [F. Demmel , Phys. Rev. B 73, 104207 (2006)] on the temperature de...
The high pressure phases of Rb have previously been investigated to 101 GPa, above which Rb is predi...
The relations between pair potentials and melting curves at high pressures are inves-tigated and the...
The use of either the Monte Carlo or molecular dynamics method to generate equations-of-state data f...
The method of calculation of the elastic constants up to third order from the energy-strain relation...