English

Linear-in temperature resistivity from an isotropic Planckian scattering rate

Strongly Correlated Electrons 2021-08-16 v2 Superconductivity

Abstract

A variety of "strange metals" exhibit resistivity that decreases linearly with temperature as T0T\rightarrow 0, in contrast with conventional metals where resistivity decreases as T2T^2. This TT-linear resistivity has been attributed to charge carriers scattering at a rate given by /τ=αkBT\hbar/\tau=\alpha k_{\rm B} T, where α\alpha is a constant of order unity. This simple relationship between the scattering rate and temperature is observed across a wide variety of materials, suggesting a fundamental upper limit on scattering---the "Planckian limit"---but little is known about the underlying origins of this limit. Here we report a measurement of the angle-dependent magnetoresistance (ADMR) of Nd-LSCO---a hole-doped cuprate that displays TT-linear resistivity down to the lowest measured temperatures. The ADMR unveils a well-defined Fermi surface that agrees quantitatively with angle-resolved photoemission spectroscopy (ARPES) measurements and reveals a TT-linear scattering rate that saturates the Planckian limit, namely α=1.2±0.4\alpha = 1.2 \pm 0.4. Remarkably, we find that this Planckian scattering rate is isotropic, i.e. it is independent of direction, in contrast with expectations from "hot-spot" models. Our findings suggest that TT-linear resistivity in strange metals emerges from a momentum-independent inelastic scattering rate that reaches the Planckian limit.

Keywords

Cite

@article{arxiv.2011.13054,
  title  = {Linear-in temperature resistivity from an isotropic Planckian scattering rate},
  author = {G. Grissonnanche and Y. Fang and A. Legros and S. Verret and F. Laliberté and C. Collignon and J. Zhou and D. Graf and P. Goddard and L. Taillefer and B. J. Ramshaw},
  journal= {arXiv preprint arXiv:2011.13054},
  year   = {2021}
}

Comments

27 pages, 11 figures. arXiv admin note: substantial text overlap with arXiv:2004.01725

R2 v1 2026-06-23T20:31:06.515Z