Physical review. B./Physical review. B · 2022 · 62 citations · 54 references
A Fermi surface coupled to a scalar field can be described in a $1/N$ expansion by choosing the fermion-scalar 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 $1/{\ensuremath{\omega}}^{2/3}$ contribution to the optical conductivity at frequency $\ensuremath{\omega}$ has vanishing coefficient 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.
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Gapless spin-fluid ground state in a random quantum Heisenberg magnet
Subir Sachdev, Jinwu Ye · Physical Review Letters · 1993 · 1.9K citations · Full text
Remarks on the Sachdev-Ye-Kitaev model
Juan Maldacena, Douglas Stanford · Physical review. D/Physical review. D. · 2016 · 1.8K citations · Full text