English

3D non-Fermi liquid behavior from 1D quantum critical local moments

Strongly Correlated Electrons 2018-04-18 v2

Abstract

We study the temperature dependence of the electrical resistivity in a system composed of critical spin chains interacting with three dimensional conduction electrons and driven to criticality via an external magnetic field. The relevant experimental system is Yb2_2Pt2_2Pb, a metal where itinerant electrons coexist with localized moments of Yb-ions which can be described in terms of effective S = 1/2 spins with dominantly one-dimensional exchange interaction. The spin subsystem becomes critical in a relatively weak magnetic field, where it behaves like a Luttinger liquid. We theoretically examine a Kondo lattice with different effective space dimensionalities of the two interacting subsystems. We characterize the corresponding non-Fermi liquid behavior due to the spin criticality by calculating the electronic relaxation rate and the dc resistivity and establish its quasi linear temperature dependence.

Keywords

Cite

@article{arxiv.1712.01884,
  title  = {3D non-Fermi liquid behavior from 1D quantum critical local moments},
  author = {Laura Classen and Igor Zaliznyak and Alexei Tsvelik},
  journal= {arXiv preprint arXiv:1712.01884},
  year   = {2018}
}

Comments

5+8 pages, 2+1 figures