The ultrafast dynamics of electrons and collective modes in systems out of equilibrium is crucially governed by the energy transfer from electronic degrees of freedom, where the energy of the pump source is usually absorbed, to lattice degrees of freedom. In conventional metals such process leads to an overall heating of the lattice, usually described by an effective lattice temperature $T_{\rm ph}$, until final equilibrium with all the degrees of freedom is reached. In specific materials, however, few lattice modes provide a preferential channel for the energy transfer, leading to a non-thermal distribution of vibrations and to the onset of {\em hot phonons}, i.e., lattice modes with a much higher population than the other modes. Hot phono...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
We have performed measurements of the phonon thermal conductivity of a variety of metallic glasses. ...
We report a Raman study of the effect of temperature on the self-energies of optical phonons in a nu...
The time dynamics of the energy flow from electronic to lattice degrees of freedom in pump-probe set...
The vibrations of atoms in a crystal (phonons) make up the majority of its entropy (or heat capacity...
The equilibration of electronic carriers in metals after excitation by an ultra-short laser pulse pr...
The properties of thermal transport in solids are very important in research and industry. Different...
Even though electron-phonon coupling is one of the most important parameters governing material evol...
The electron-phonon coupling and the corresponding energy exchange are investigated experimentally a...
The effect of electron-phonon (e-ph) coupling on thermal transport across metal-nonmetal interfaces ...
Heat supplied to a metal is absorbed by the electrons and then transferred to the lattice. In conven...
Inelastic neutron scattering was used to measure phonon spectra in MgB_2 and Mg_(0.75)Al_(0.25)B_2 f...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
By employing the embedded-atom potentials of Mei et ai.[l], we have calculated the dynamical matric...
Phonons, as the building blocks of solid-state physics, have been studied for almost one hundred yea...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
We have performed measurements of the phonon thermal conductivity of a variety of metallic glasses. ...
We report a Raman study of the effect of temperature on the self-energies of optical phonons in a nu...
The time dynamics of the energy flow from electronic to lattice degrees of freedom in pump-probe set...
The vibrations of atoms in a crystal (phonons) make up the majority of its entropy (or heat capacity...
The equilibration of electronic carriers in metals after excitation by an ultra-short laser pulse pr...
The properties of thermal transport in solids are very important in research and industry. Different...
Even though electron-phonon coupling is one of the most important parameters governing material evol...
The electron-phonon coupling and the corresponding energy exchange are investigated experimentally a...
The effect of electron-phonon (e-ph) coupling on thermal transport across metal-nonmetal interfaces ...
Heat supplied to a metal is absorbed by the electrons and then transferred to the lattice. In conven...
Inelastic neutron scattering was used to measure phonon spectra in MgB_2 and Mg_(0.75)Al_(0.25)B_2 f...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
By employing the embedded-atom potentials of Mei et ai.[l], we have calculated the dynamical matric...
Phonons, as the building blocks of solid-state physics, have been studied for almost one hundred yea...
We adapt existing phonon heat transport methods to compute the phononic thermal conductance of metal...
We have performed measurements of the phonon thermal conductivity of a variety of metallic glasses. ...
We report a Raman study of the effect of temperature on the self-energies of optical phonons in a nu...