Influence of the Nd states on the magnetic behavior and the electric field gradient of the oxypnictides superconductors NdFeAsOF
arXiv:0909.5335 · doi:10.1103/PhysRevB.79.094515
Abstract
The structural, electronic, and magnetic properties of the superconducting NdFeAsOF phases ( for ) have been investigated experimentally by high-resolution synchrotron x-ray powder diffraction, magnetization and As NMR measurements. Density-functional calculations were performed to calculate and analyze the electric field gradient and the density of states. Compared to LaFeAsO family, the NdFeAsO family shows a contraction of the lattice parameters with shorter rare-earth (RE)-As bond distances, an increased thickness of the As-Fe-As layer, and less distorted Fe-As tetrahedra. The As quadrupole frequencies are enhanced with respect to the La analogs. This is due to a more prolate As electron distribution mainly caused by the reduced lattice parameters and not by the presence of Nd electrons. A non-negligible hyperfine coupling between the As nuclei and the Nd states indicates a weak coupling between the REO and FeAs layer and possibly opens the channel for a Ruderman-Kittel-Kasuya-Yosida (RKKY)-type interaction between localized Nd moments mediated by itinerant Fe 3d and/or Nd states.
7 pages, 6 figures, replaces 0806.1450
References in corpus (21)
- Magnetic Order versus superconductivity in the Iron-based layered La(O1-xFx)FeAs systems
- Superconductivity at 41 K and its competition with spin-density-wave instability in layered CeOFFeAs
- Superconductivity and Phase Diagram in the Iron-based Arsenic-oxides ReFeAsO1-delta (Re = rare earth metal) without F-Doping
- Superconductivity in iron-based F-doped layered quaternary compound Nd[O1-xFx]FeAs
- Correlated electronic structure of LaOFeAs
- Superconductivity at 52 K in iron-based F-doped layered quaternary compound Pr[O1-xFx]FeAs
- The challenge of unravelling magnetic properties in LaFeAsO
- Evolution from Itinerant Antiferromagnet to Unconventional Superconductor with Fluorine Doping in La(O_{1-x}F_{x})FeAs Revealed by ^{75}As and ^{139}La Nuclear Magnetic Resonance
- Commensurate Spin Density Wave in LaOFeAs: A Local Probe Study
- As NMR studies of superconducting LaOFFeAs
- Crystallographic Phase Transition and High-Tc Superconductivity in LaFeAsO:F
- Antiferromagnetic superexchange interactions in LaOFeAs
- Commensurate Itinerant Antiferromagnetism in BaFe2As2: 75As-NMR Studies on a Self-Flux Grown Single Crystal
- Magnetic and structural transitions in layered FeAs systems: AFe2As2 versus RFeAsO compounds
- Superconductivity at 36 K in Gadolinium-arsenide Oxides GdOFFeAs
- Magnetic Order of the Iron Spins in NdOFeAs
- 19-F NMR Investigation of Iron-pnictide Superconductor LaFeAsO(0.89)F(0.11)
- High pressure synthesis of late rare earth RFeAs(O,F) superconductors; R = Tb and Dy
- Muon spin relaxation studies of magnetic order and superfluid density in antiferromagnetic NdOFeAs, BaFe2As2 and superconducting (Ba,K)Fe2As2
- The effect of internal pressure on the tetragonal to monoclinic structural phase transition in ReOFeAs: the case of NdOFeAs
- Mott State and Quantum Critical Points in Rare-Earth Oxypnictides ()