paper

Origin of anomalous temperature dependence of Nernst effect in narrow-gap semiconductors

arXiv:2010.11001 · doi:10.1103/PhysRevB.103.L041202

Abstract

Based on the Boltzmann transport theory, we study the origin of the anomalous temperature dependence of the Nernst coefficient () due to the phonon-drag mechanism. For narrow-gap semiconductors, we find that there are two characteristic temperatures at which a noticeable peak structure appears in . Contrarily, the Seebeck coefficient () always has only one peak. While the breakdown of the Sondheimer cancellation due to the momentum-dependence of the electron relaxation time is essential for the peak in at low , the contribution of the valence band to the phonon-drag current is essential for the peak at higher . By considering this mechanism, we successfully reproduce and of FeSb for which a gigantic phonon-drag effect is observed experimentally.

References in corpus (4)