English

Negative intercept of the apparent zero-temperature extrapolated linear-in-$T$ metallic resistivity

Mesoscale and Nanoscale Physics 2024-09-04 v2

Abstract

We consider the well-known phonon scattering induced high-temperature linear-in-TT metallic resistivity, showing that a naive extrapolation of the effective linearity from high temperatures to T=0T=0 leads to an apparent zero-temperature negative resistivity. The precise magnitude of this extrapolated T=0T=0 negative resistivity depends on the temperature regime from where the extrapolation is carried out, and approaches the correct physical result of zero resistivity at T=0T=0 only if the extrapolation starts from TTDT\gg T_D, where TDT_D is the Debye temperature. We establish a theoretical relationship between the negative intercept and the slope of the linear-in-TT resistivity as a function of the temperature TT 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.

Keywords

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