Phonon properties predicted from lattice dynamics calculations and the Boltzmann Transport Equation (BTE) are used to elucidate the thermal-transport properties of ionic materials. It is found that a rigorous treatment of the Coulombic interac-tions within the harmonic analysis is needed for the analysis of the phonon structure of the solid, while a short-range approxi-mation is sufficient for the third-order force constants. The effects on the thermal conductivity of the relaxation time approximation, the classical approximation to the phonon sta-tistics, the direct summation method for the electrostatic inter-actions, and the quasi-harmonic approximation to lattice dynamics are quantified. Quantitative agreement is found between predictio...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
Phonon properties predicted from lattice dynamics calculations and the Boltzmann Transport Equation ...
Phonon properties predicted from lattice dynamics calculations and the Boltzmann Transport Equation ...
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)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
The thermal transport of a dielectric solid can be determined by means of the Boltzmann equation reg...
The thermal transport of a dielectric solid can be determined by means of the Boltzmann equation reg...
An analytical treatment of decomposition of the phonon thermal conductivity of a crystal with a mona...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
Phonon properties predicted from lattice dynamics calculations and the Boltzmann Transport Equation ...
Phonon properties predicted from lattice dynamics calculations and the Boltzmann Transport Equation ...
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)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
The thermal transport of a dielectric solid can be determined by means of the Boltzmann equation reg...
The thermal transport of a dielectric solid can be determined by means of the Boltzmann equation reg...
An analytical treatment of decomposition of the phonon thermal conductivity of a crystal with a mona...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
As discussed in a previous paper [1], the thermal transport in dielectric solids can be obtained by ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...