SPECTRAL ORIGINS OF GIANT FARADAY-ROTATION AND ELLIPTICITY IN BISUBSTITUTED MAGNETIC GARNETS

被引:71
作者
DIONNE, GF [1 ]
ALLEN, GA [1 ]
机构
[1] MIT,DEPT PHYS,CAMBRIDGE,MA 02139
关键词
D O I
10.1063/1.352723
中图分类号
O59 [应用物理学];
学科分类号
摘要
Electrical permittivity theory has been applied to the interpretation of data describing the anomalously high Faraday rotation and ellipticity in the Y3-xBixFe5O12 ferrimagnetic system. By the use of exact forms of the basic phenomenological equations for the off-diagonal tensor element epsilon1 = epsilon1' + iepsilon1'', the measured Bi3+ influence on the separate component epsilon1', and epsilon1'' spectra from 1 to 5 eV has been closely fitted to theory by the superposition of three Fe3+ (diamagnetic) electric dipole transitions occurring at 2.6, 3.15, and 3.9 eV, respectively. The strong transition at 3.15 eV that is believed to originate from Fe-O6 molecular complexes of the octahedral sublattice may also have a smaller companion peak in the vicinity of 5 eV. Transition bandwidths and excited-state splittings determined from the matching of theory to experiment both indicate that strong Bi covalent interactions exist with the Fe-O6 and Fe-O4 complexes. These results also confirm that the enhanced magneto-optical effects in the longer-wavelength region (lambda approximately 1 mum) are dominated by the tail of the epsilon1' diamagnetic peak at 3.15 eV.
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页码:6127 / 6129
页数:3
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