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  4. Determination of the single-ion anisotropy energy in a S=5/2 kagome antiferromagnet using x-ray absorption spectroscopy
 
research article

Determination of the single-ion anisotropy energy in a S=5/2 kagome antiferromagnet using x-ray absorption spectroscopy

de Vries, M. A.
•
Johal, T. K.
•
Mirone, A.
Show more
2009
Physical Review B

We report x-ray absorption and x-ray linear dichroism measurements at the Fe L-2,L-3 edges of the geometrically frustrated systems of potassium and hydronium iron jarosite. Comparison with simulated spectra, involving ligand-field multiplet calculations modeling the 3d-2p hybridization between the iron ion and the oxygen ligands, has yielded accurate estimates for the ligand metal-ion hybridization and the resulting single-ion crystal-field anisotropy energy. Using this method we provide an experimentally verified scenario for the appearance of a single-ion anisotropy in this nominally high-spin 3d(5) orbital singlet S-6 system, which accounts for features of the spin-wave dispersion in the long-range-ordered ground state of potassium iron jarosite.

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Type
research article
DOI
10.1103/PhysRevB.79.045102
Web of Science ID

WOS:000262978400018

Author(s)
de Vries, M. A.
Johal, T. K.
Mirone, A.
Claydon, J. S.
Nilsen, G. J.
Ronnow, H. M.  
van der Laan, G.
Harrison, A.
Date Issued

2009

Published in
Physical Review B
Volume

79

Issue

4

Article Number

045102

Subjects

Transition-Metal Compounds

•

Lattice Antiferromagnets

•

Magnetic-Properties

•

Potassium Jarosite

•

Field

•

Spin

•

Dichroism

•

Fe

•

Spectra

•

Photoemission

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LQM  
Available on Infoscience
April 2, 2009
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/36486
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