Angle-resolved photoemission study of quasi-one-dimensional superconductor -NaVO
arXiv:cond-mat/0308368 · doi:10.1103/PhysRevB.69.140506
Abstract
We have studied the electronic structure of -NaVO, which becomes a superconductor under pressure, by angle-resolved photoemission spectroscopy. Clear band dispersions is observed only along the chain direction, indicating the quasi-one-dimensional (1D) electronic structure. The spectra of the V 3d band are dominated by a Gaussian-like broad feature at 1 eV below the Fermi level () with negligible intensity at , which we attribute to strong electron-phonon coupling as in other 1D polaronic metals. In the momentum space, the spectra show a maximum intensity at , where is the V-V distance along the b-axis, reflecting the band filling of the chain and/or ladder.
4 pages, 4 figures
References in corpus (3)
Cited by in corpus (9)
- Electronic structure of quantum materials studied by angle-resolved photoemission spectroscopy
- From charge- and spin-ordering to superconductivity in the organic charge-transfer solids
- Temperature Dependence of the Chemical Potential in NaxCoO2: Implications for the Large Thermoelectric Power
- The Valence Transition Model of Pseudogap, Charge-Order and Superconductivity in Electron- and Hole-Doped Copper Oxides
- Na-ion dynamics in Quasi-1D compound NaV2O4
- Unusual Pseudogap-like Features Observed in Iron Oxypnictide Superconductors
- Investigation of lattice dynamics, magnetism and electronic transport in -NaVO
- Local singlets, frustration, and unconventional superconductivity in the organic charge-transfer solids
- Anomalous quasiparticle lifetime in geometric quantum critical metals