Numerical evidence shows ω/T scaling in susceptibilities and 1/T cluster conductivity near the pseudogap QCP in the 2D Hubbard model, consistent with marginal-Fermi-liquid self-energy and strange-metal transport.
Pseudogap and high-temperature superconductivity from weak to strong coupling. Towards a quantitative theory (Review Article)
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DMFT long-range order in chargons plus spinon fluctuations creates asymmetric damping that turns low-doping hole pockets into Fermi arcs, while chargon pockets remain candidates for quantum oscillations.
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Dynamical scaling near the pseudogap quantum critical point of the two-dimensional Hubbard model
Numerical evidence shows ω/T scaling in susceptibilities and 1/T cluster conductivity near the pseudogap QCP in the 2D Hubbard model, consistent with marginal-Fermi-liquid self-energy and strange-metal transport.
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The pseudogap in high-$T_c$ superconductors from SU(2) gauge symmetry and dynamic correlation effects
DMFT long-range order in chargons plus spinon fluctuations creates asymmetric damping that turns low-doping hole pockets into Fermi arcs, while chargon pockets remain candidates for quantum oscillations.