We investigate the asymmetry between electron and hole doping in a 2D Mott insulator and the resulting competition between antiferromagnetism (AFM) and d-wave superconductivity (SC), using variational Monte Carlo calculations for projected wave functions. We find that key features of the T = 0 phase diagram, such as critical doping for SC-AFM coexistence and the maximum value of the SC order parameter, are determined by a single parameter η which characterizes the topology of the “Fermi surface” at half filling defined by the bare tight-binding parameters. Our results give insight into why AFM wins for electron doping, while SC is dominant on the hole-doped side. We also suggest using band structure engineering to control the η parameter fo...
[[abstract]]New trial wave functions, constructed explicitly from the unique Mott insulating state w...
3The dualism between superconductivity and charge/spin modulations (the so-called stripes) dominates...
Using as a model the Hubbard Hamiltonian, we determine various basic properties of electron-and hole...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
We investigate the asymmetry between electron and hole doping in a 2D Mott insulator and the resulti...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
The phase diagram of cuprate high-temperature superconductors is investigated on the basis of the th...
Copyright © 2013 Takashi Yanagisawa et al. This is an open access article distributed under the Crea...
3noWe consider the one-band Hubbard model on the square lattice by using variational and Green's fun...
AbstractIn order to study the material dependence of the correlation between stripes and dx2-y2-wave...
The electronic structures of the ground state for several different superconducting materials, such ...
We investigate the phase diagram of the t−J model on a triangular lattice using a variational Monte ...
We analyze a mean-field model of electrons on a square lattice with two types of interaction: forwar...
International audienceThe moiré Hubbard model describes correlations in certain homobilayer twisted ...
Using a semi-classical Monte Carlo simulation technique the t-t'-J model and the MMP model are studi...
[[abstract]]New trial wave functions, constructed explicitly from the unique Mott insulating state w...
3The dualism between superconductivity and charge/spin modulations (the so-called stripes) dominates...
Using as a model the Hubbard Hamiltonian, we determine various basic properties of electron-and hole...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
We investigate the asymmetry between electron and hole doping in a 2D Mott insulator and the resulti...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
The phase diagram of cuprate high-temperature superconductors is investigated on the basis of the th...
Copyright © 2013 Takashi Yanagisawa et al. This is an open access article distributed under the Crea...
3noWe consider the one-band Hubbard model on the square lattice by using variational and Green's fun...
AbstractIn order to study the material dependence of the correlation between stripes and dx2-y2-wave...
The electronic structures of the ground state for several different superconducting materials, such ...
We investigate the phase diagram of the t−J model on a triangular lattice using a variational Monte ...
We analyze a mean-field model of electrons on a square lattice with two types of interaction: forwar...
International audienceThe moiré Hubbard model describes correlations in certain homobilayer twisted ...
Using a semi-classical Monte Carlo simulation technique the t-t'-J model and the MMP model are studi...
[[abstract]]New trial wave functions, constructed explicitly from the unique Mott insulating state w...
3The dualism between superconductivity and charge/spin modulations (the so-called stripes) dominates...
Using as a model the Hubbard Hamiltonian, we determine various basic properties of electron-and hole...