Two different heat-transport mechanisms are discussed in solids. In crystals, heat carriers propagate and scatter particlelike as described by Peierls's formulation of the Boltzmann transport equation for phonon wave packets. In glasses, instead, carriers behave wavelike, diffusing via a Zener-like tunneling between quasidegenerate vibrational eigenstates, as described by the Allen-Feldman equation. Recently, it has been shown that these two conduction mechanisms emerge from a Wigner transport equation, which unifies and extends the Peierls-Boltzmann and Allen-Feldman formulations, allowing one to describe also complex crystals where particlelike and wavelike conduction mechanisms coexist. Recently, it has been shown that these two conducti...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Predicting the thermal conductivity of glasses from first principles has hitherto been a prohibitive...
We introduce a novel approach to model heat transport in solids, based on the Green-Kubo theory of l...
Two different heat-transport mechanisms are discussed in solids: in crystals, heat carriers propagat...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Thermal conductivity in dielectric crystals is the result of the relaxation of lattice vibrations de...
Heat conduction in dielectric crystals originates from the dynamics of atomic vibrations, whose evol...
Heat conduction in dielectric crystals originates from the dynamics of atomic vibrations, whose evol...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
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)...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Predicting the thermal conductivity of glasses from first principles has hitherto been a prohibitive...
We introduce a novel approach to model heat transport in solids, based on the Green-Kubo theory of l...
Two different heat-transport mechanisms are discussed in solids: in crystals, heat carriers propagat...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Crystals and glasses exhibit fundamentally different heat conduction mechanisms: the periodicity of ...
Thermal conductivity in dielectric crystals is the result of the relaxation of lattice vibrations de...
Heat conduction in dielectric crystals originates from the dynamics of atomic vibrations, whose evol...
Heat conduction in dielectric crystals originates from the dynamics of atomic vibrations, whose evol...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
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)...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Demands for engineering thermal transport properties are ever increasing for a wide range of modern ...
Predicting the thermal conductivity of glasses from first principles has hitherto been a prohibitive...
We introduce a novel approach to model heat transport in solids, based on the Green-Kubo theory of l...