Enhanced Orbital Degeneracy in Momentum Space for LaOFeAs
arXiv:0803.4487 · doi:10.1088/0256-307X/26/1/017401
Abstract
The Fermi surfaces (FS) of LaOFeAs (in =0 plane) consist of two hole-type circles around point, which do not touch each other, and two electron-type co-centered ellipses around M point, which are degenerate along the M-X line. By first-principles calculations, here we show that additional degeneracy exists for the two electron-type FS, and the crucial role of F-doping and pressure is to enhance this orbital degeneracy. It is suggested that the inter-orbital fluctuation is the key point to understand the unconventional superconductivity in these materials.
4 pages, 5 figures
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Cited by in corpus (9)
- Electronic structure of the iron-based superconductor LaOFeP
- Properties of a two orbital model for oxypnictide superconductors: Magnetic order, B_2g spin-singlet pairing channel, and its nodal structure
- ARPES studies of the electronic structure of LaOFe(P,As)
- Magnetic and Metallic State at Intermediate Hubbard U Coupling in Multiorbital Models for Undoped Fe Pnictides
- On interband pairing in multiorbital systems
- Multiorbital Effects on Antiferromagnetism in Fe Pnictides
- Evidence for Local Moment by Electron Spin Resonance Study on Polycrystalline LaFeAsOF (x=0 and 0.13)
- Supercell studies of the Fermi surface changes in the electron-doped superconductor LaFeAsOF
- Pressure Effects on the Superconducting and Spin-Density-Wave States of the Newly Discovered Sm(O1-xFx)FeAs