Normal State Gap in Parent Cuprate Pr2CuO4+/-δ
arXiv:1703.03096 · doi:10.1103/PhysRevB.96.104518
Abstract
We present a tunneling study on single crystalline parent cuprate thin films, i.e. a series of Pr2CuO4+/-δ(PCO) with tunable superconducting transition temperature. The zero-bias anomaly of differential conductance, well reported in the normal state of R2-xCexCuO4 (R = Pr, Nd, La) and named as normal state gap (NSG), is observed in the Ce-free samples. This NSG behaves quite robust against the magnetic field up to 16 T, but fades away with increasing the temperature. Most importantly, we find that the magnitude of the NSG becomes larger with increasing point-contact junction resistance on the superconducting films, which is further enhanced in the non-superconducting samples of more oxygen disorders. The origination of NSG can be understood in the framework of Altshuler-Aronov-Lee (AAL) theory, where the disorder-induced electron-electron interactions suppress the density of states and thereby result in a soft Coulomb gap.
5 pages,4 figures
References in corpus (7)
- Direct evidence for a competition between the pseudogap and high temperature superconductivity in the cuprates
- Coexistence of competing orders with two energy gaps in real and momentum space in high-Tc superconductor Bi2Sr2-xLaxCuO6+delta
- Role of oxygen in the electron-doped superconducting cuprates
- Normal State Nernst Effect in Electron-doped Pr2-xCexCuO4: Superconducting Fluctuations and Two-band Transport
- Superconductivity in undoped T'-RE2CuO4 with Tc over 30 K
- Optical study of superconducting PrCuO with
- Transport anomalies and quantum criticality in electron-doped cuprate superconductors