A quantum dimer model for the pseudogap metal
arXiv:1501.00978 · doi:10.1073/pnas.1512206112
Abstract
We propose a quantum dimer model for the metallic state of the hole-doped cuprates at low hole density, . The Hilbert space is spanned by spinless, neutral, bosonic dimers and spin , charge fermionic dimers. The model realizes a `fractionalized Fermi liquid' with no symmetry-breaking and small hole pocket Fermi surfaces enclosing a total area determined by . Exact diagonalization, on lattices of sizes up to , shows anisotropic quasiparticle residue around the pocket Fermi surfaces. We discuss the relationship to experiments.
9+10 pages, 17 figures