We determine the ground-state phase diagram of the three-band Hubbard model across a range of model parameters using density matrix embedding theory. We study the atomic-scale nature of the antiferromagnetic (AFM) and superconducting (SC) orders, explicitly including the oxygen degrees of freedom. All parametrizations of the model display AFM and SC phases, but the decay of AFM order with doping is too slow compared to the experimental phase diagram, and further, coexistence of AFM and SC orders occurs in all parameter sets. The local magnetic moment localizes entirely at the copper sites. The magnetic phase diagram is particularly sensitive to Δ_(pd) and t_(pp), and existing estimates of the charge transfer gap Δ_(pd) appear too large in s...
We study the symmetry-broken phases in two- and three-orbital Hubbard models with lifted orbital de...
Understanding the complex phase diagram of cuprate superconductors is a long-standing challenging pr...
The phase diagram of the d=3 Hubbard model is calculated as a function of temperature and electron d...
We determine the ground-state phase diagram of the three-band Hubbard model across a range of model ...
Significant progress has been made in studying strongly correlated electronic systems with major foc...
We compute the ground-state phase diagram of the Hubbard and frustrated Hubbard models on the square...
Abstract One central challenge in high-Tc superconductivity (SC) is to derive a detailed understandi...
One central challenge in high-Tc superconductivity (SC) is to derive a detailed understanding for th...
We study the three-band Hubbard model, commonly used to describe the copper-oxygen planes of high-Tc...
A pair density wave (PDW) is a superconducting (SC) state with spatially modulated order parameter. ...
High-temperature superconductors have been discovered for more than three decades. Nonetheless, the ...
The Hubbard model is a paradigmatic model in the realm of condensed matter physics. Recently a wor...
We study ordered phases with broken translational symmetry in the half-filled three- orbital Hubbard...
We explore the ground-state properties of the two-band Hubbard model with degenerate electronic band...
We determined the phase diagram of the three-band model for CuO$\text{}_{2}$ planes of high temperat...
We study the symmetry-broken phases in two- and three-orbital Hubbard models with lifted orbital de...
Understanding the complex phase diagram of cuprate superconductors is a long-standing challenging pr...
The phase diagram of the d=3 Hubbard model is calculated as a function of temperature and electron d...
We determine the ground-state phase diagram of the three-band Hubbard model across a range of model ...
Significant progress has been made in studying strongly correlated electronic systems with major foc...
We compute the ground-state phase diagram of the Hubbard and frustrated Hubbard models on the square...
Abstract One central challenge in high-Tc superconductivity (SC) is to derive a detailed understandi...
One central challenge in high-Tc superconductivity (SC) is to derive a detailed understanding for th...
We study the three-band Hubbard model, commonly used to describe the copper-oxygen planes of high-Tc...
A pair density wave (PDW) is a superconducting (SC) state with spatially modulated order parameter. ...
High-temperature superconductors have been discovered for more than three decades. Nonetheless, the ...
The Hubbard model is a paradigmatic model in the realm of condensed matter physics. Recently a wor...
We study ordered phases with broken translational symmetry in the half-filled three- orbital Hubbard...
We explore the ground-state properties of the two-band Hubbard model with degenerate electronic band...
We determined the phase diagram of the three-band model for CuO$\text{}_{2}$ planes of high temperat...
We study the symmetry-broken phases in two- and three-orbital Hubbard models with lifted orbital de...
Understanding the complex phase diagram of cuprate superconductors is a long-standing challenging pr...
The phase diagram of the d=3 Hubbard model is calculated as a function of temperature and electron d...