Negative intercept of the apparent zero-temperature extrapolated linear-in-$T$ metallic resistivity
Abstract
We consider the well-known phonon scattering induced high-temperature linear-in- metallic resistivity, showing that a naive extrapolation of the effective linearity from high temperatures to leads to an apparent zero-temperature negative resistivity. The precise magnitude of this extrapolated negative resistivity depends on the temperature regime from where the extrapolation is carried out, and approaches the correct physical result of zero resistivity at only if the extrapolation starts from , where is the Debye temperature. We establish a theoretical relationship between the negative intercept and the slope of the linear-in- resistivity as a function of the temperature from where the extrapolation is carried out. Experimental implications of our finding are discussed for the much-discussed Planckian behavior of the transport scattering rate.
Cite
@article{arxiv.2407.01664,
title = {Negative intercept of the apparent zero-temperature extrapolated linear-in-$T$ metallic resistivity},
author = {Yi-Ting Tu and Sankar Das Sarma},
journal= {arXiv preprint arXiv:2407.01664},
year = {2024}
}
Comments
7 pages, 6 figures