In the high-transition-temperature (high-T-c) superconductors the pseudogap phase becomes predominant when the density of doped holes is reduced(1). Within this phase it has been unclear which electronic symmetries (if any) are broken, what the identity of any associated order parameter might be, and which microscopic electronic degrees of freedom are active. Here we report the determination of a quantitative order parameter representing intra-unit-cell nematicity: the breaking of rotational symmetry by the electronic structure within each CuO2 unit cell. We analyse spectroscopic-imaging scanning tunnelling microscope images of the intra-unit-cell states in underdoped Bi2Sr2CaCu2O8 + delta and, using two independent evaluation techniques, f...
Electronic phases with symmetry properties matching those of conventional liquid crystals have recen...
Within the complex phase diagram of the hole-doped cuprates, seizing the nature of the mysterious ps...
This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.o...
In the high-transition-temperature (high-T-c) superconductors the pseudogap phase becomes predominan...
The nature of the pseudogap phase is a central problem in the effort to understand the high-transiti...
Recent observations of broken symmetries have partly demystified the pseu-dogap phase. Here we revie...
We report atomic-scale characterization of the pseudogap state in a high-Tc superconductor, Bi2Sr2Ca...
The CuO2 antiferromagnetic insulator is transformed by hole-doping into an exotic quantum fluid usua...
The high-temperature superconductivity has remained one of the most puzzling phenomena in contempora...
The intra-unit-cell nematic phase is studied within the three-band Emery model of the cuprates by us...
A long-standing controversial issue in the quest to understand the superconductivity in cuprates is ...
Electronic nematicity is the spontaneous loss of rotational symmetry in a metal, without breaking tr...
The pseudogap phenomenon in the cuprates is arguably the most mysterious puzzle in the field of high...
The phase diagram of hole-doped copper oxides shows four different electronic phases existing at zer...
ĉe discovery of high-Tc superconductivity in ljǑǐǎ generated tremendous excitement. However, despite ...
Electronic phases with symmetry properties matching those of conventional liquid crystals have recen...
Within the complex phase diagram of the hole-doped cuprates, seizing the nature of the mysterious ps...
This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.o...
In the high-transition-temperature (high-T-c) superconductors the pseudogap phase becomes predominan...
The nature of the pseudogap phase is a central problem in the effort to understand the high-transiti...
Recent observations of broken symmetries have partly demystified the pseu-dogap phase. Here we revie...
We report atomic-scale characterization of the pseudogap state in a high-Tc superconductor, Bi2Sr2Ca...
The CuO2 antiferromagnetic insulator is transformed by hole-doping into an exotic quantum fluid usua...
The high-temperature superconductivity has remained one of the most puzzling phenomena in contempora...
The intra-unit-cell nematic phase is studied within the three-band Emery model of the cuprates by us...
A long-standing controversial issue in the quest to understand the superconductivity in cuprates is ...
Electronic nematicity is the spontaneous loss of rotational symmetry in a metal, without breaking tr...
The pseudogap phenomenon in the cuprates is arguably the most mysterious puzzle in the field of high...
The phase diagram of hole-doped copper oxides shows four different electronic phases existing at zer...
ĉe discovery of high-Tc superconductivity in ljǑǐǎ generated tremendous excitement. However, despite ...
Electronic phases with symmetry properties matching those of conventional liquid crystals have recen...
Within the complex phase diagram of the hole-doped cuprates, seizing the nature of the mysterious ps...
This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.o...