The nature of the metallic phase in the high- transition- temperature ( high-T(c)) copper oxide superconductors, and its evolution with carrier concentration, has been a long-standing mystery(1). A central question is how coherent electronic states, or quasiparticles, emerge from the antiferromagnetic insulator with doping. Recent quantum oscillation experiments on lightly doped copper oxides have shown evidence for small pockets of Fermi surface(2-5), the formation of which has been associated with the opening of the pseudogap - ananisotropic gap in the normal state excitation spectrum of unknown origin(1). As the doping is increased, experiments suggest that the full Fermi surface is restored(6,7), although the doping level at which the p...
The unclear relationship between cuprate superconductivity and the pseudogap state remains an impedi...
The discovery of quantum oscillations in hole- and electron-doped cuprate families has underscored t...
All conventional metals are known to possess a three-dimensional Fermi surface, which is the locus i...
The nature of the metallic phase in the high- transition- temperature ( high-T(c)) copper oxide supe...
The metallic state of the underdoped high- T c cuprates has remained an enigma: how may seemingly d...
We review recent progress in the study of quantum oscillations as a tool for uniquely probing low-en...
Cuprate supercoductors show pseudogap state below its transition temperature $T^*$. The pseudogap st...
One of the leading challenges of condensed matter physics in the past few decades is an understandi...
The standard theory of metals, Fermi liquid theory, hinges on the key assumption that although the e...
An understanding of the missing antinodal electronic excitations in the pseudogap state is essential...
We report quantum oscillations in the underdoped high-temperature superconductor YBa2 Cu3 O6+x over ...
As doping increases in cuprate superconductors, the superconducting transition temperature increases...
We report quantum oscillations in the underdoped high-temperature superconductor YBa2 Cu3 O6+x over ...
As doping increases in cuprate superconductors, the superconducting transition temperature increases...
Abstract: Hall effect and quantum oscillation measurements on high temperature cuprate superconducto...
The unclear relationship between cuprate superconductivity and the pseudogap state remains an impedi...
The discovery of quantum oscillations in hole- and electron-doped cuprate families has underscored t...
All conventional metals are known to possess a three-dimensional Fermi surface, which is the locus i...
The nature of the metallic phase in the high- transition- temperature ( high-T(c)) copper oxide supe...
The metallic state of the underdoped high- T c cuprates has remained an enigma: how may seemingly d...
We review recent progress in the study of quantum oscillations as a tool for uniquely probing low-en...
Cuprate supercoductors show pseudogap state below its transition temperature $T^*$. The pseudogap st...
One of the leading challenges of condensed matter physics in the past few decades is an understandi...
The standard theory of metals, Fermi liquid theory, hinges on the key assumption that although the e...
An understanding of the missing antinodal electronic excitations in the pseudogap state is essential...
We report quantum oscillations in the underdoped high-temperature superconductor YBa2 Cu3 O6+x over ...
As doping increases in cuprate superconductors, the superconducting transition temperature increases...
We report quantum oscillations in the underdoped high-temperature superconductor YBa2 Cu3 O6+x over ...
As doping increases in cuprate superconductors, the superconducting transition temperature increases...
Abstract: Hall effect and quantum oscillation measurements on high temperature cuprate superconducto...
The unclear relationship between cuprate superconductivity and the pseudogap state remains an impedi...
The discovery of quantum oscillations in hole- and electron-doped cuprate families has underscored t...
All conventional metals are known to possess a three-dimensional Fermi surface, which is the locus i...