Variational Monte-Carlo studies of Gossamer Superconductivity
Abstract
We use a partially Gutzwiller projected BCS d-wave wavefunction with an antiferromagentic weighting factor to study the ground state phase diagram of a half filled Hubbard-Heisenberg model in a square lattice with nearest neighbor hopping and a diagonal hopping . The calculations are carried out by using variational Monte Carlo method which treats the Gutzwiller projection explicitly. At large on-site Coulomb interaction , the ground state is antiferromagnetic. As decreases, the ground state becomes superconducting and eventually metallic. The phase diagram is obtained by extensive calculations. As compared to the strong effect of , the phase boundaries turn out to be less sensitive to . The result is consistent with the phase diagram in layered organic conductors, and is compared to the earlier mean field result based on the Gutzwiller approximation.
Keywords
Cite
@article{arxiv.0809.2533,
title = {Variational Monte-Carlo studies of Gossamer Superconductivity},
author = {Siegfried Guertler and Qiang-Hua Wang and Fu-Chun Zhang},
journal= {arXiv preprint arXiv:0809.2533},
year = {2015}
}
Comments
5 pages, 4 figures