Unlike phonon-boundary resistance at the interface of two dissimilar lattices, the phonon grain-boundary resistance ARp,gb is over an ultrathin atomic restructured region bounded by two identical lattices. Using nonequilibrium, classical molecular dynamic simulations on bicrystal UO2 over 300–1200 K, we predict that ARp,gb (i.e., phonon, grain mean free path) is independent of temperature and the grain boundary type (e.g., tilt, twist). We compare these predictions with existing analytical models and identify those which include the proper grain-boundary phonon scattering mechanisms. Also, using the same embedded-atom interatomic potential models, we predict the phonon dispersion, density of states and bulk thermal conductivity of UO2, and ...
In the present study, mesoscale simulations of grain growth in UO2 are performed using a 2D level se...
The thermal properties of β-Ga2O3 can significantly affect the performance and reliability of high-p...
The thermal conductivities of UO2 single crystals containing nanoscale size pores and He gas bubbles...
We use phonon wave-packet dynamics to study the phonon transmission at UO2 twist grain boundaries as...
Lattice vibration is the main microscopic mechanism for thermal transport in dielectric materials. T...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
International audienceIn irradiated polycrystalline uranium dioxide (UO2), the pressure generated at...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
In this article we investigated surface of nanocrystals (NCs) of uranium dioxide (UO 2) using molecu...
Inelastic neutron scattering measurements of individual phonon lifetimes and dispersion at 295 and 1...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
In the present work, calculations of the thermal conductivity of UO2 were carried out applying class...
The thermal conductivity of hypo- and hyperstoichiometric UO 2 is calculated as a function of defect...
In the present study, mesoscale simulations of grain growth in UO2 are performed using a 2D level se...
The thermal properties of β-Ga2O3 can significantly affect the performance and reliability of high-p...
The thermal conductivities of UO2 single crystals containing nanoscale size pores and He gas bubbles...
We use phonon wave-packet dynamics to study the phonon transmission at UO2 twist grain boundaries as...
Lattice vibration is the main microscopic mechanism for thermal transport in dielectric materials. T...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
The thermal conductivities of single crystal and polycrystalline UO2 are calculated using molecular ...
International audienceIn irradiated polycrystalline uranium dioxide (UO2), the pressure generated at...
International audienceEBSD measurements performed on polycrystalline UO2 samples were analyzed to ob...
In this article we investigated surface of nanocrystals (NCs) of uranium dioxide (UO 2) using molecu...
Inelastic neutron scattering measurements of individual phonon lifetimes and dispersion at 295 and 1...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
In the present work, calculations of the thermal conductivity of UO2 were carried out applying class...
The thermal conductivity of hypo- and hyperstoichiometric UO 2 is calculated as a function of defect...
In the present study, mesoscale simulations of grain growth in UO2 are performed using a 2D level se...
The thermal properties of β-Ga2O3 can significantly affect the performance and reliability of high-p...
The thermal conductivities of UO2 single crystals containing nanoscale size pores and He gas bubbles...