The thermal properties of insulating, crystalline materials are essentially determined by their phonon dispersions, the finite-temperature excitations of their phonon populations-treated as a Bose-Einstein gas of harmonic oscillators-and the lifetimes of these excitations. The conceptual foundations of this picture are now a well-established cornerstone in the theory of solids. However, only in recent years our theoretical and algorithmic capabilities have reached the point where we can now determine all these quantities from first-principles, i.e. from a quantum-mechanical description of the system at hand without any empirical input. Such advances have been largely due to the development of density-functional perturbation theory that allo...
The thermal conductivity of disordered silicon-germanium alloys is computed from density-functional ...
We present a first-principles approach to calculate the phonon thermal conductivity based on the Gre...
Thesis advisor: David A. BroidoUsing density functional perturbation theory and a full solution of t...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
The properties of thermal transport in solids are very important in research and industry. Different...
The properties of thermal transport in solids are very important in research and industry. Different...
The original version of this article may be found at the Applied Physics Letters website: http://dx...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
An original approach to the theoretical calculations of the heat conductivity of crystals based on t...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Thermal conductivity in semiconductors is investigated through the phonon transport description. Fro...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The thermal conductivity of disordered silicon-germanium alloys is computed from density-functional ...
We present a first-principles approach to calculate the phonon thermal conductivity based on the Gre...
Thesis advisor: David A. BroidoUsing density functional perturbation theory and a full solution of t...
Using harmonic and anharmonic force constants extracted from density functional calculations within ...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2011.Catalo...
The properties of thermal transport in solids are very important in research and industry. Different...
The properties of thermal transport in solids are very important in research and industry. Different...
The original version of this article may be found at the Applied Physics Letters website: http://dx...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
An original approach to the theoretical calculations of the heat conductivity of crystals based on t...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Thermal conductivity in semiconductors is investigated through the phonon transport description. Fro...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
The thermal conductivity of disordered silicon-germanium alloys is computed from density-functional ...
We present a first-principles approach to calculate the phonon thermal conductivity based on the Gre...
Thesis advisor: David A. BroidoUsing density functional perturbation theory and a full solution of t...