Bandwidth and Fermi surface of Iron-Oxypnictides: covalency and sensitivity to structural changes
arXiv:0806.3285 · doi:10.1103/PhysRevB.78.064518
Abstract
Some important aspects of the electronic structure of the iron oxypnictides depend very sensitively on small changes in interatomic distances and bond angles within the iron-pnictogen subunit. Using first-principles full-potential electronic structure calculations, we investigate this sensitive dependence, contrasting in particular LaOFeAs and LaOFeP. The width of the Fe-bands is significantly larger for LaOFeP, indicating a better metal and weaker electronic correlations. When calculated at their experimental crystal structure these two materials have significantly different low-energy band structure. The topology of the Fermi surface changes when going from LaOFeP to LaOFeAs, with a three-dimensional hole pocket present in the former case transforming into a tube with two-dimensional dispersion. We show that the low-energy band structure of LaOFeAs evolves towards that of LaOFeP as the As atom is lowered closer to the Fe plane with respect to its experimental position. The physical origin of this sensitivity to the iron-pnictogen distance is the covalency of the iron-pnictogen bond, leading to strong hybridization effects. To illustrate this, we construct Wannier functions, which are found to have a large spatial extension when the energy window is restricted to the bands with dominant iron character. Finally, we show that the Fe bandwidth slightly increases as one moves along the rare-earth series in ReOFeAs and discuss the physical origin of this effect.
10 pages, 9 figures
References in corpus (11)
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- LaFeAsOF: A low carrier density superconductor near itinerant magnetism
- Competing Orders and Spin-Density-Wave Instability in La(OF)FeAs
- Is LaOFFeAs an electron-phonon superconductor ?
- Correlated electronic structure of LaOFeAs
- Electron-Hole Symmetry and Magnetic Coupling in Antiferromagnetic LaOFeAs
- Iron-based layered superconductor LaOFFeAs: an antiferromagnetic semimetal
- Dynamical mean-field theory using Wannier functions: a flexible route to electronic structure calculations of strongly correlated materials
- A possible ground state and its electronic structure of a mother material (LaOFeAs) of new superconductors
- Intrinsic Properties of Stoichiometric LaOFeP
- Electromagnetic properties and electronic structure of iron-based layered superconductor LaOFeP
Cited by in corpus (25)
- Density functional study of FeS, FeSe and FeTe: Electronic structure, magnetism, phonons and superconductivity
- Dynamical Mean-Field Theory within an Augmented Plane-Wave Framework: Assessing Electronic Correlations in the Iron Pnictide LaFeAsO
- The Unprecedented Giant Coupling of Fe-spin State and the As-As Hybridization in Iron-Pnictide
- Superconductivity induced by phosphorus doping and its coexistence with ferromagnetism in EuFe(AsP)
- Fermi surface of superconducting LaFePO determined by quantum oscillations
- Electronic Structure of Fe-Based Superconductors
- Interplay of Rare Earth and Iron magnetism in RFeAsO with R = La, Ce, Pr, and Sm: A muon spin relaxation study and symmetry analysis
- Properties of a two orbital model for oxypnictide superconductors: Magnetic order, B_2g spin-singlet pairing channel, and its nodal structure
- Superconductivity in LaFeAsPO: effect of chemical pressures and bond covalency
- Superconductivity above 50K in LnFeAsO1-y (Ln= Nd, Sm, Gd, Tb and Dy) Synthesized by High-pressure Technique
- Lower Critical Fields of Superconducting PrFeAsO Single Crystals
- Local moment versus Kondo behavior of the 4f-electrons in rare-earth iron oxypnictides
- Tight binding model for iron pnictides
- Structural and electronic response upon hole-doping of rare-earth iron oxyarsenides Nd1-xSrxFeAsO (0 < x < 0.2)
- Neutron scattering investigation of the magnetic order in single crystalline BaFe2As2
- Role of covalent Fe-As bonding in the magnetic moment formation and exchange mechanisms in iron-pnictide superconductors
- Electronic properties of LaOFFeAs in the normal state probed by NMR/NQR
- Temperature dependence and resonance effects in Raman scattering of phonons in NdFeAsOF single crystals
- Effect of the tetrahedral distortion on the electronic properties of iron-pnictides
- Penetration depth, lower critical fields, and quasiparticle conductivity in Fe-arsenide superconductors
- Normal State Spin Dynamics of Five-band Model for Iron-pnictides
- Anharmonic softening of Raman active phonons in Iron-Pnictides; estimating the Fe isotope effect due to anharmonic expansion
- Is the nature of magnetic order in copper-oxides and in iron-pnictides different?
- Unconventional superconductivity originating from disconnected Fermi surfaces in the iron-based compound
- A first principles study on FeAs single layers