Understanding the complex phase diagram of cuprate superconductors is a long-standing challenging problem. Recent studies have shown that orbital degrees of freedom, both Cu $e_g$ orbitals and O $p$ orbitals, are a key ingredient for a unified understanding of cuprate superconductors, including the material dependence. Here we investigate a four-band $d$-$p$ model derived from the first-principles calculations with the variational Monte Carlo method, which allows us to elucidate competing orders on an equal footing. The obtained results can consistently explain the doping dependence of superconductivity, antiferromagnetic and stripe phases, phase separation in the underdoped region, and also novel magnetism in the heavily-overdoped region. ...
Multilayered cuprates possess not only the highest superconducting temperature transition but also o...
6 pages, 2 figures + supp. mat. 15 pages, 10 figuresAt optimal doping, different cuprate compounds c...
International audienceMotivated by the recent experimental determination of the three-dimensional Fe...
We utilize a 1d Hubbard model to show that the superconductivity in cuprate superconductors likely a...
The minimal ingredients to explain the essential physics of layered copper-oxide (cuprates) material...
The minimal ingredients to explain the essential physics of layered copper-oxide (cuprates) material...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to a charge...
Spontaneous symmetry breaking constitutes a paradigmatic classification scheme of matter. However, b...
We study the phase diagram of an effective three-orbital model of the cuprates using variational Mon...
The phase diagram of cuprate high-temperature superconductors is investigated on the basis of the th...
Journal ArticleWe reduce the three-band model of planar CuO2 to a single-band of composite fermions....
A major pathway towards understanding complex systems is given by exactly solvable reference systems...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to only thr...
In order to understand the material dependence of Tc within the single-layered cuprates, we study a ...
Motivated by the recent experimental determination of the three-dimensional Fermi surface of overdop...
Multilayered cuprates possess not only the highest superconducting temperature transition but also o...
6 pages, 2 figures + supp. mat. 15 pages, 10 figuresAt optimal doping, different cuprate compounds c...
International audienceMotivated by the recent experimental determination of the three-dimensional Fe...
We utilize a 1d Hubbard model to show that the superconductivity in cuprate superconductors likely a...
The minimal ingredients to explain the essential physics of layered copper-oxide (cuprates) material...
The minimal ingredients to explain the essential physics of layered copper-oxide (cuprates) material...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to a charge...
Spontaneous symmetry breaking constitutes a paradigmatic classification scheme of matter. However, b...
We study the phase diagram of an effective three-orbital model of the cuprates using variational Mon...
The phase diagram of cuprate high-temperature superconductors is investigated on the basis of the th...
Journal ArticleWe reduce the three-band model of planar CuO2 to a single-band of composite fermions....
A major pathway towards understanding complex systems is given by exactly solvable reference systems...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to only thr...
In order to understand the material dependence of Tc within the single-layered cuprates, we study a ...
Motivated by the recent experimental determination of the three-dimensional Fermi surface of overdop...
Multilayered cuprates possess not only the highest superconducting temperature transition but also o...
6 pages, 2 figures + supp. mat. 15 pages, 10 figuresAt optimal doping, different cuprate compounds c...
International audienceMotivated by the recent experimental determination of the three-dimensional Fe...