Orbital localization and the role of the Fe and As orbitals in BaFeAs probed by XANES
arXiv:2112.09980 · doi:10.1103/PhysRevB.105.045130
Abstract
The polarization dependence of the near edge x-ray absorption spectroscopy (XANES) is an element specific probe to the real-space distribution of the density of unoccupied states in solid-state materials. In this paper, we present Fe and As -edge experiments of Ba(Fe)As ( Mn, Co and and ). The experiments reveal a strong polarization dependence of the probed XANES spectra, which concerns mainly an increase of the intensity of electronic transitions when the beam polarization is set out of the sample's crystallographic plane. The results show that states with -orbital character dominate the density of unoccupied states close to the Fermi level. Partial substitution of Fe by Co is shown to decrease the intensity anisotropy, suggesting that Co promotes electronic transfer preferentially to states with -orbital character. On the other hand, Mn substitution causes the increase of the spectra -orbital anisotropy, which is proposed to take place by means of an enhanced local Fe mixing, unveiling the role of Fe states in the localization of the Fe orbitals. Moreover, by comparing our results to previous experiments, we identify the relative mixing between Fe and the pnictide orbitals as a clear divide between the electronic properties of iron arsenides and selenides. Our conclusions are supported by multiple-scattering theory calculations of the XANES spectra and by quantum chemistry calculations of Fe coordination electronic structure.
9 pages, 6 figures, 1 table
References in corpus (18)
- Superconductivity at 22 K in Co-doped BaFe2As2 Crystals
- Coherence-incoherence crossover in the normal state of iron-oxypnictides and importance of the Hund's rule coupling
- Iron-Based Superconductors: current status of materials and pairing mechanism
- Magnetism and Charge Dynamics in Iron Pnictides
- Renormalized behavior and proximity to a magnetic quantum critical point in BaCoAs
- A study of electronic structure of FeSeTe chalcogenides by Fe and Se K-edge x-ray absorption near edge structure measurements
- Crystallography and Physical Properties of BaCo2As2, Ba{0.94}K{0.06}Co2As2 and Ba{0.78}K{0.22}Co2As2
- Electronic structure of single-crystalline Sr(FeCo)As probed by x-ray absorption spectroscopy: Evidence for isovalent substitution of Fe by Co
- Angular Dependence of X-ray Absorption Spectrum for Field-aligned Fe-based Superconductors
- X-ray absorption spectroscopy (XAS) investigation of the electronic structure of superconducting FeSex single crystals
- Possible unconventional superconductivity in substituted BaFeAs revealed by magnetic pair-breaking studies
- Reciprocity between local moments and collective magnetic excitations in the phase diagram of BaFe(AsP)
- Anisotropic magnetic excitations and incipient Néel order in Ba(FeMn)As
- Comprehensive study of out-of-plane transport properties in BaFeAs: Three-dimensional electronic state and effect of chemical substitution
- Carrier localization due to local magnetic order induced by magnetic impurities in Ba(FeTM)As (TM = Mn and Cr) as seen via optical spectra
- Hard X-ray spectroscopy of the itinerant magnets FeSb (Na, K, Ca, Sr, Ba)
- Temperature dependent As K-edge EXAFS studies of LaFe1-xCoxAsO (x = 0.0 and 0.11) single crystals
- Fluctuating magnetism of Co- and Cu-doped NaFeAs