Superconductivity emerges from the cuprate antiferromagnetic Mott state with hole doping. The resulting electronic structure(1) is not understood, although changes in the state of oxygen atoms seem paramount(2-5). Hole doping first destroys the Mott state, yielding a weak insulator(6,7) where electrons localize only at low temperatures without a full energy gap. At higher doping levels, the 'pseudogap', a weakly conducting state with an anisotropic energy gap and intra-unit-cell breaking of 90 degrees rotational (C-4v) symmetry, appears(3,4,8-10). However, a direct visualization of the emergence of these phenomena with increasing hole density has never been achieved. Here we report atomic-scale imaging of electronic structure evolution from...
The key thermodynamic characteristics of the pseudogap state in cuprate superconductors are reviewed...
Thesis advisor: Ziqiang WangOne of the most unconventional electronic states in high transition temp...
We study the pseudogap phase of cuprate superconducting systems in a Hartree–Fock approach to the Hu...
Superconductivity emerges from the cuprate antiferromagnetic Mott state with hole doping. The result...
The phase diagram of hole-doped copper oxides shows four different electronic phases existing at zer...
It is widely believed that many of the exotic physical properties of the high-T{sub c} cuprate super...
We report atomic-scale characterization of the pseudogap state in a high-Tc superconductor, Bi2Sr2Ca...
High temperature superconductivity in cuprates arises from doping a parent Mott insulator by electro...
International audienceThe pseudogap is a partial gap in the electronic density of states that opens ...
This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.o...
It is widely believed that high-temperature superconductivity in the cuprates emerges from doped Mot...
High-temperature superconductors belong to the group of strongly correlated materials. In these comp...
A recent report on ARPES on insulating $\rm Ca_{2}CuO_{2}Cl_{2}$, compared to previous data from $\...
Cuprate high-temperature superconductors exhibit a pseudogap in the normal state that decreases mono...
Removing electrons from the CuO2 plane of cuprates alters the electronic correlations sufficiently t...
The key thermodynamic characteristics of the pseudogap state in cuprate superconductors are reviewed...
Thesis advisor: Ziqiang WangOne of the most unconventional electronic states in high transition temp...
We study the pseudogap phase of cuprate superconducting systems in a Hartree–Fock approach to the Hu...
Superconductivity emerges from the cuprate antiferromagnetic Mott state with hole doping. The result...
The phase diagram of hole-doped copper oxides shows four different electronic phases existing at zer...
It is widely believed that many of the exotic physical properties of the high-T{sub c} cuprate super...
We report atomic-scale characterization of the pseudogap state in a high-Tc superconductor, Bi2Sr2Ca...
High temperature superconductivity in cuprates arises from doping a parent Mott insulator by electro...
International audienceThe pseudogap is a partial gap in the electronic density of states that opens ...
This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.o...
It is widely believed that high-temperature superconductivity in the cuprates emerges from doped Mot...
High-temperature superconductors belong to the group of strongly correlated materials. In these comp...
A recent report on ARPES on insulating $\rm Ca_{2}CuO_{2}Cl_{2}$, compared to previous data from $\...
Cuprate high-temperature superconductors exhibit a pseudogap in the normal state that decreases mono...
Removing electrons from the CuO2 plane of cuprates alters the electronic correlations sufficiently t...
The key thermodynamic characteristics of the pseudogap state in cuprate superconductors are reviewed...
Thesis advisor: Ziqiang WangOne of the most unconventional electronic states in high transition temp...
We study the pseudogap phase of cuprate superconducting systems in a Hartree–Fock approach to the Hu...