English

Quantum Critical Transport Near the Mott Transition

Strongly Correlated Electrons 2015-03-17 v4

Abstract

We perform a systematic study of incoherent transport in the high temperature crossover region of the half-filled one-band Hubbard model. We demonstrate that the family of resistivity curves displays characteristic quantum critical scaling of the form ρ(δU,T)=ρc(T)f(T/To(δU))\rho(\delta U,T)=\rho_{c}(T)f(T/T_{o}(\delta U)), with To(δU)δUzνT_{o}(\delta U)\sim\delta U^{z\nu}, and ρc(T)T\rho_{c}(T)\sim T. The corresponding β\beta-function displays a "strong coupling" form βln(ρc/ρ)\beta\sim\ln(\rho_{c}/\rho), reflecting the peculiar mirror symmetry of the scaling curves. This behavior, which is surprisingly similar to some experimental findings, indicates that Mott quantum criticality may be acting as the fundamental mechanism behind the unusual transport phenomena in many systems near the metal-insulator transition.

Keywords

Cite

@article{arxiv.1012.5833,
  title  = {Quantum Critical Transport Near the Mott Transition},
  author = {H. Terletska and J. Vucicevic and D. Tanasković and V. Dobrosavljević},
  journal= {arXiv preprint arXiv:1012.5833},
  year   = {2015}
}

Comments

Published version; 4+epsilon pages, 4 figures

R2 v1 2026-06-21T17:04:59.209Z