Exact solution of a two-species quantum dimer model for pseudogap metals
Abstract
We present an exact ground state solution of a quantum dimer model introduced in Ref.[1], which features ordinary bosonic spin-singlet dimers as well as fermionic dimers that can be viewed as bound states of spinons and holons in a hole-doped resonating valence bond liquid. Interestingly, this model captures several essential properties of the metallic pseudogap phase in high- cuprate superconductors. We identify a line in parameter space where the exact ground state wave functions can be constructed at an arbitrary density of fermionic dimers. At this exactly solvable line the ground state has a huge degeneracy, which can be interpreted as a flat band of fermionic excitations. Perturbing around the exactly solvable line, this degeneracy is lifted and the ground state is a fractionalized Fermi liquid with a small pocket Fermi surface in the low doping limit.
Cite
@article{arxiv.1712.01854,
title = {Exact solution of a two-species quantum dimer model for pseudogap metals},
author = {Johannes Feldmeier and Sebastian Huber and Matthias Punk},
journal= {arXiv preprint arXiv:1712.01854},
year = {2018}
}
Comments
Revised version, 8 pages