An original approach to the theoretical calculations of the heat conductivity of crystals based on the first principles molecular dynamics has been proposed. The proposed approach exploits the kinetic theory of phonon heat conductivity and permits calculating several material properties at certain temperature: specific heat, elastic constant, acoustic velocity, mean phonon scattering time and coefficient of thermal conductivity. The method has been applied to silicon and phosphorus doped silicon crystals and the obtained results have been found to be in satisfactory agreement with corresponding experimental data. The proposed computation technique may be applied to the calculations of heat conductivity of pure and doped semiconductors and i...
We provide a tutorial introduction to the modern theoretical and computational schemes available to ...
The properties of thermal transport in solids are very important in research and industry. Different...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thermal conductivity in semiconductors is investigated through the phonon transport description. Fro...
The thermal properties of insulating, crystalline materials are essentially determined by their phon...
Results of the ab initio molecular dynamics calculations of silicon crystals are presented by means ...
The original version of this article may be found at the Applied Physics Letters website: http://dx...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Based on first-principles density-functional calculations, we have developed and tested a force-fiel...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
Although the thermal conductivity of silicon has been studied before, current estimations for the ph...
The lattice thermal conductivities of silicon clathrate frameworks II and VIII are investigated by u...
The lattice thermal conductivities of silicon clathrate frameworks II and VIII are investigated by u...
The properties of thermal transport in solids are very important in research and industry. Different...
We provide a tutorial introduction to the modern theoretical and computational schemes available to ...
The properties of thermal transport in solids are very important in research and industry. Different...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thermal conductivity in semiconductors is investigated through the phonon transport description. Fro...
The thermal properties of insulating, crystalline materials are essentially determined by their phon...
Results of the ab initio molecular dynamics calculations of silicon crystals are presented by means ...
The original version of this article may be found at the Applied Physics Letters website: http://dx...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Based on first-principles density-functional calculations, we have developed and tested a force-fiel...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
Although the thermal conductivity of silicon has been studied before, current estimations for the ph...
The lattice thermal conductivities of silicon clathrate frameworks II and VIII are investigated by u...
The lattice thermal conductivities of silicon clathrate frameworks II and VIII are investigated by u...
The properties of thermal transport in solids are very important in research and industry. Different...
We provide a tutorial introduction to the modern theoretical and computational schemes available to ...
The properties of thermal transport in solids are very important in research and industry. Different...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...