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Large N theory of critical Fermi surfaces II: conductivity

ORAL

Abstract

A Fermi surface coupled to a scalar field can be described in a 1/N expansion by choosing the fermionscalar Yukawa coupling to be random in the N-dimensional flavor space, but invariant under translations. We compute the conductivity of such a theory in two spatial dimensions for a critical scalar. We find a Drude contribution, and verify that the proposed 1/ω2/3 contribution to the optical conductivity at frequency ω has vanishing co-efficient for a convex Fermi surface. We also describe the influence of impurity scattering of the fermions, and find that while the self energy resembles a marginal Fermi liquid, the resistivity and optical conductivity behave like a Fermi liquid.

Publication: Phys. Rev. B 106, 115151

Presenters

  • Haoyu Guo

    Harvard University

Authors

  • Haoyu Guo

    Harvard University

  • Aavishkar A Patel

    Center for Computational Quantum Physics, Flatiron Institute, Flatiron Institute, Flatiron Institute, Simons Foundation

  • Ilya Esterlis

    Harvard University

  • Subir Sachdev

    Harvard University