Hidden Fermi Liquid, Scattering Rate Saturation and Nernst Effect: a DMFT Perspective
Abstract
We investigate the transport properties of a correlated metal within dynamical mean field theory. Canonical Fermi liquid behavior emerges only below a very low temperature scale . Surprisingly the quasiparticle scattering rate follows a quadratic temperature dependence up to much higher temperatures and crosses over to saturated behavior around a temperature scale . We identify these quasiparticles as constituents of the hidden Fermi liquid. The non-Fermi liquid transport above , in particular the linear-in- resistivity, is shown to be a result of a strongly temperature dependent band dispersion. We derive simple expressions for resistivity, Hall angle, thermoelectric power and Nernst coefficient in terms of a temperature dependent renormalized band structure and the quasiparticle scattering rate. We discuss possible tests of the DMFT picture of transport using ac measurements.
Cite
@article{arxiv.1304.7486,
title = {Hidden Fermi Liquid, Scattering Rate Saturation and Nernst Effect: a DMFT Perspective},
author = {Wenhu Xu and Kristjan Haule and Gabriel Kotliar},
journal= {arXiv preprint arXiv:1304.7486},
year = {2013}
}
Comments
5 pages, 3 figures and Supplementary Material