We use cellular dynamical mean-field theory with extended unit cells to study the ground state of the two-dimensional repulsive Hubbard model at finite doping. We calculate the energy of states where d-wave superconductivity coexists with spatially nonuniform magnetic and charge order and find that they are energetically favored in a large doping region as compared to the uniform solution. We also study the spatial form of the density and the superconducting and magnetic order parameters at different doping values.Peer reviewe
We study the ground state of the doped Hubbard model on the honeycomb lattice in the small doping an...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...
We use cellular dynamical mean-field theory with extended unit cells to study the ground state of th...
Cellular dynamical mean field theory is used to study the competition of antiferromagnetism and d-wa...
Cellular dynamical mean field theory is used to study the competition of antiferromagnetism and d-wa...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
The present thesis presents a systematic study of the possible cluster extensions of the dynamical m...
The present thesis presents a systematic study of the possible cluster extensions of the dynamical m...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
We study the ground state of the doped Hubbard model on the honeycomb lattice in the small doping an...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...
We use cellular dynamical mean-field theory with extended unit cells to study the ground state of th...
Cellular dynamical mean field theory is used to study the competition of antiferromagnetism and d-wa...
Cellular dynamical mean field theory is used to study the competition of antiferromagnetism and d-wa...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
We study the competition of antiferromagnetism and d-wave superconductivity at zero temperature in t...
The present thesis presents a systematic study of the possible cluster extensions of the dynamical m...
The present thesis presents a systematic study of the possible cluster extensions of the dynamical m...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
Proximity to a Mott insulating phase is likely to be an important physical ingredient of a theory th...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
The superconducting instabilities of the doped repulsive 2D Hubbard model are studied in the interme...
We study the ground state of the doped Hubbard model on the honeycomb lattice in the small doping an...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...
| openaire: EC/H2020/771891/EU//QSIMCORRWe explore the effect of inhomogeneity on electronic propert...