We report a fully ab initio calculation of the temperature dependence of the electronic band structure of PbTe. We address two main features relevant for the thermoelectric figure of merit: the temperature variations of the direct gap and the difference in energies of the two topmost valence band maxima located at L and Σ. We account for the energy shift of the electronic states due to thermal expansion, as well as electron-phonon interaction computed using the nonadiabatic Allen-Heine-Cardona formalism within density functional perturbation theory and the local density approximation. We capture the increase of the direct gap with temperature in very good agreement with experiment. We also predict that the valence band maxima at L and Σ bec...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
Recent experimental characterizations on thermoelectric materials revealed novel phenomena that requ...
The interactions between electrons and phonons drive a large array of technologically relevant mater...
We report a fully ab initio calculation of the temperature dependence of the electronic band structu...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We have conducted a temperature-dependent angle-resolved photoemission spectroscopy (ARPES) study of...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We report optical properties of PbTe and PbSe as obtained from first-principles calculations with th...
Achieving high valley degeneracy (i.e. "band convergence") in a material usually results in consider...
PbTe is an important thermoelectric material for power generation applications due its high conversi...
We revisit the thermoelectric (TE) transport properties of two champion materials, PbTe and SnSe, us...
The interactions between electrons and phonons drive a large array of technologically relevant mater...
At room temperature, PbTe and SnTe are efficient thermoelectrics with a cubic structure. At low temp...
We present a first-principles-based model of electron-phonon scattering mechanisms and thermoelectri...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
Recent experimental characterizations on thermoelectric materials revealed novel phenomena that requ...
The interactions between electrons and phonons drive a large array of technologically relevant mater...
We report a fully ab initio calculation of the temperature dependence of the electronic band structu...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We have conducted a temperature-dependent angle-resolved photoemission spectroscopy (ARPES) study of...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We report optical properties of PbTe and PbSe as obtained from first-principles calculations with th...
Achieving high valley degeneracy (i.e. "band convergence") in a material usually results in consider...
PbTe is an important thermoelectric material for power generation applications due its high conversi...
We revisit the thermoelectric (TE) transport properties of two champion materials, PbTe and SnSe, us...
The interactions between electrons and phonons drive a large array of technologically relevant mater...
At room temperature, PbTe and SnTe are efficient thermoelectrics with a cubic structure. At low temp...
We present a first-principles-based model of electron-phonon scattering mechanisms and thermoelectri...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
We investigate the harmonic and anharmonic contributions to the phonon spectrum of lead telluride an...
Recent experimental characterizations on thermoelectric materials revealed novel phenomena that requ...
The interactions between electrons and phonons drive a large array of technologically relevant mater...