The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied using two independent methods: first, using a theoretical approach developed in terms of the Zwanzig-Mori formalism and based on Bogolyubov's idea of reduced description of relaxation processes in liquids; second, using molecular dynamics simulation. The X-ray inelastic scattering spectra obtained with the theoretical approach and computer simulation are compared with experimental data. The high-frequency acoustic excitations that appear on microscopic spatial scales in liquid aluminum are found to be mainly caused by two-, three-, and four-particle interactions. © Nauka/Interperiodica 2006
International audienceUsing a combination of ab initio molecular dynamics and several fit models for...
AbstractThe dependence of the melting temperature versus the pressure under static conditions and un...
The dynamical processes of liquid alkali metals, executed by analyzing the time scale of relaxation ...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
Using a simple sech(at) form of the relaxation kernel in the Mori-Zwanzig scheme, the authors calcul...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
International audienceAbstract The characteristic property of a liquid, discriminating it from a sol...
Collective dynamics in liquid Ca and liquid Cd was studied by inelastic x-ray scattering (IXS). Usin...
Collective dynamics in liquid Ca and liquid Cd was studied by inelastic x-ray scattering (IXS). Usin...
We studied collective dynamics of pure liquid metal Tl using a combination of ab initio molecular dy...
We studied collective dynamics of pure liquid metal Tl using a combination of ab initio molecular dy...
International audienceUsing a combination of ab initio molecular dynamics and several fit models for...
AbstractThe dependence of the melting temperature versus the pressure under static conditions and un...
The dynamical processes of liquid alkali metals, executed by analyzing the time scale of relaxation ...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
The microscopic collective dynamics of liquid aluminum near the melting temperature has been studied...
Using a simple sech(at) form of the relaxation kernel in the Mori-Zwanzig scheme, the authors calcul...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
By use of the recurrent relation approach (RRA) we study the microscopic dynamics of liquid aluminiu...
International audienceAbstract The characteristic property of a liquid, discriminating it from a sol...
Collective dynamics in liquid Ca and liquid Cd was studied by inelastic x-ray scattering (IXS). Usin...
Collective dynamics in liquid Ca and liquid Cd was studied by inelastic x-ray scattering (IXS). Usin...
We studied collective dynamics of pure liquid metal Tl using a combination of ab initio molecular dy...
We studied collective dynamics of pure liquid metal Tl using a combination of ab initio molecular dy...
International audienceUsing a combination of ab initio molecular dynamics and several fit models for...
AbstractThe dependence of the melting temperature versus the pressure under static conditions and un...
The dynamical processes of liquid alkali metals, executed by analyzing the time scale of relaxation ...