DocumentCode :
794382
Title :
Magneto-optic spectroscopy perovskite-type La1-x(Ba,Sr) xMnO3
Author :
Fumagalli, Paul ; Spaeth, Christian ; Güntherodt, Gernot ; Von Helmolt, Rittmar ; Wecker, Joachim
Author_Institution :
2. Phys. Inst., Tech. Hochschule Aachen, Germany
Volume :
31
Issue :
6
fYear :
1995
fDate :
11/1/1995 12:00:00 AM
Firstpage :
3277
Lastpage :
3279
Abstract :
Epitaxial thin films of ferromagnetic perovskite-type La1-x (Ba,Sr)xMnO3 have been studied at room temperature by means of polar Kerr rotation and ellipsometric measurements over a wide photon energy range. The Kerr-rotation spectra show two prominent features, one at 2 eV and a second, larger one around 3.2 eV but the spectra do not differ much with Sr or Ba substitution. This indicates that exclusively electronic transitions involving Mn-3d and O-2p electrons are magnetooptically active. The Kerr rotation reaches a maximum value of -0.23° in La0.7Sr0.3MnO3 at a photon energy of 3.2 eV. The structure at 2 eV is tentatively assigned to a dipole-forbidden, spin-allowed intra-Mn transition between crystal-field split 3d levels. The feature at 3.2 eV arises from a charge-transfer transition from occupied O-2p into empty Mn-3d levels. At low Sr doping (x=0.1), a narrow peak appears in the Kerr spectra at 4.6 eV. The full width at half maximum is estimated to be 0.25 eV. This is a factor of three smaller than the width of the two structures at lower energies. From the narrow width it is concluded that well localized electronic states are involved. Yet, the origin of this structure remains unclear
Keywords :
Kerr magneto-optical effect; barium compounds; charge transfer states; crystal field interactions; ellipsometry; ferromagnetic materials; lanthanum compounds; localised states; magnetic epitaxial layers; mixed valence compounds; strontium compounds; visible spectra; 0.7 to 4.8 eV; Kerr-rotation spectra; La1-x(Ba,Sr)xMnO3; LaBaSrMnO3; charge-transfer transition; crystal-field split 3d levels; dipole-forbidden spin-allowed intra-Mn transition; electronic transitions; ellipsometric measurements; epitaxial thin films; ferromagnetic perovskite; full width at half maximum; localized electronic states; magneto-optic spectroscopy; magnetooptically active transitions; mixed valence; polar Kerr rotation; Energy measurement; Magnetic field measurement; Magnetic materials; Magnetooptic effects; Material storage; Rotation measurement; Spectroscopy; Strontium; Temperature distribution; Transistors;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.490359
Filename :
490359
Link To Document :
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