Constant-volume quantum molecular dynamics (QMD) simulations of uranium (U) have been carried out over a range of pressures and temperatures that span the experimentally observed solid orthorhombic {alpha}-U, body-centered cubic (bcc), and liquid phases, using an ab initio plane-wave pseudopotential method within the generalized gradient approximation of density functional theory. A robust U pseudopotential has been constructed for these simulations that treats the 14 valence and outer-core electrons per atom necessary to calculate accurate structural and thermodynamic properties up to 100 GPa. Its validity has been checked by comparing low-temperature results with experimental data and all-electron full-potential linear-muffin-tin-orbital ...
Elasticity, lattice dynamics, and thermal expansion for uranium and U–6Nb alloy (elastic moduli) are...
Our series of articles is devoted to high-precision molecular dynamics simulation of mixed actinide-...
A re-formulated and re-parameterized interatomic potential for uranium metal in the Charge-Optimized...
Molecular uranium complexes are the most widely studied in actinide chemistry, and make a significan...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Studying the physical properties of materials under high pressure and temperature through experiment...
Ability to perform a feasible and reliable computation of thermochemical properties of chemically co...
We present high-temperature thermodynamic properties for uranium in its γ phase (γ-U) from first-pri...
Producción CientíficaUranium compounds are used as fissile materials in nuclear reactors. In present...
32 pags., 6 figs., 2 tabs. -- Open Access funded by Creative Commons Atribution Licence 3.0With the...
Uranium (U) exhibits a high temperature body-centered cubic (bcc) allotrope that is often stabilized...
Methodology and computational details Theoretical studies performed in recent years on actinide cont...
Uranium (U) exhibits a high temperature body-centered cubic (b.c.c.) allotrope that is often stabili...
Elasticity, lattice dynamics, and thermal expansion for uranium and U–6Nb alloy (elastic moduli) are...
Our series of articles is devoted to high-precision molecular dynamics simulation of mixed actinide-...
A re-formulated and re-parameterized interatomic potential for uranium metal in the Charge-Optimized...
Molecular uranium complexes are the most widely studied in actinide chemistry, and make a significan...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Thermodynamic properties of bcc uranium with point defects are studied using ab initio molecular dyn...
Studying the physical properties of materials under high pressure and temperature through experiment...
Ability to perform a feasible and reliable computation of thermochemical properties of chemically co...
We present high-temperature thermodynamic properties for uranium in its γ phase (γ-U) from first-pri...
Producción CientíficaUranium compounds are used as fissile materials in nuclear reactors. In present...
32 pags., 6 figs., 2 tabs. -- Open Access funded by Creative Commons Atribution Licence 3.0With the...
Uranium (U) exhibits a high temperature body-centered cubic (bcc) allotrope that is often stabilized...
Methodology and computational details Theoretical studies performed in recent years on actinide cont...
Uranium (U) exhibits a high temperature body-centered cubic (b.c.c.) allotrope that is often stabili...
Elasticity, lattice dynamics, and thermal expansion for uranium and U–6Nb alloy (elastic moduli) are...
Our series of articles is devoted to high-precision molecular dynamics simulation of mixed actinide-...
A re-formulated and re-parameterized interatomic potential for uranium metal in the Charge-Optimized...