DocumentCode :
809734
Title :
Giant magnetooptic rotations: the role of orbital polarization and explicit correlation effects
Author :
Lim, S.P. ; Price, David L. ; Cooper, Bernard R.
Author_Institution :
Dept. of Phys., West Virginia Univ., Morgantown, WV, USA
Volume :
27
Issue :
4
fYear :
1991
fDate :
7/1/1991 12:00:00 AM
Firstpage :
3648
Lastpage :
3654
Abstract :
An ab initio itinerant-electron calculation for a class of cerium and uranium compounds was performed over the full frequency range studied experimentally. The band structure is obtained from a self-consistent spin-polarized full-potential linearized muffin-tin orbital calculation with a true interstitial. It was found that, for the compounds that display giant Kerr rotations, such a conventional calculation provides magnetooptic behavior very different from that obtained experimentally. This poor agreement was attributed to the presence of a large orbitally driven magnetism totally unlike the magnetism of Ni and Fe, and to the possible importance of explicit correlation effects on approaching heavy fermion behavior. Therefore, explicit orbital polarization was incorporated into the band calculation. This brings about a much better agreement for the ordered magnetic moments but fails to provide adequate agreement for the magnetooptic behavior; furthermore, unlike a calculation including explicit correlation effects, it does not provide agreement with the experimental ordered moment for the incipient heavy fermion CeTe system.
Keywords :
Kerr magneto-optical effect; ab initio calculations; band model of magnetism; cerium compounds; electron spin polarisation; magnetic moments; muffin-tin potential; uranium compounds; CeSb; CeTe; USb; UTe; ab initio itinerant-electron calculation; band structure; explicit correlation effects; giant Kerr rotations; giant magnetooptic rotations; heavy fermion behavior; interstitial; orbital polarization; ordered magnetic moments; self-consistent spin-polarized full-potential linearized muffin-tin orbital calculation; Cerium; Couplings; Displays; Frequency; Iron; Magnetic anisotropy; Magnetic materials; Magnetic moments; Magnetooptic effects; Nickel; Orbital calculations; Perpendicular magnetic anisotropy; Polarization;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/20.102935
Filename :
102935
Link To Document :
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