DocumentCode
1038322
Title
Large longitudinal Kerr rotations and figures of merit in thin Iron films
Author
Judy, Jack H. ; Alstad, John K. ; Bate, Geoffrey ; Wiitala, James R.
Author_Institution
IBM Corporation, Boulder, Colo
Volume
4
Issue
3
fYear
1968
fDate
9/1/1968 12:00:00 AM
Firstpage
401
Lastpage
405
Abstract
The longitudinal Kerr effect in thin iron films prepared by electron-beam evaporation on glass substrates has been studied as a function of film thickness (20-1340 Å), angle of incidence (30-75 degrees), incident index of refraction (1-1.65), and wavelength (0.4-0.8 μ) with
and
incident polarizations. In addition, the Kerr figures of merit were determined from the measured values of the double Kerr rotations and optical reflectivities. The film thickness was measured by interferometry and X-ray fluorescence techniques. As the film thickness decreased, the magnitude of the Kerr rotations with
and
polarizations decreased from about 8 minutes to zero for an incident index
, an exit index
, and a 45- degree angle of incidence. However, the rotations of the same films increased from about 16 minutes to a maximum of 30 minutes near 200 Å for
, and a 45-degree angle of incidence at the film surface. The corresponding Kerr figures of merit for
exhibited peaks about a decade larger than the values determined for
. Clearly, a simple increase of the incident index of refraction provides a significant enhancement of a magnetooptical signal. Analysis of the phenomenological magnetooptical equations for a two-surface thin-film structure gives satisfactory agreement with our results.
and
incident polarizations. In addition, the Kerr figures of merit were determined from the measured values of the double Kerr rotations and optical reflectivities. The film thickness was measured by interferometry and X-ray fluorescence techniques. As the film thickness decreased, the magnitude of the Kerr rotations with
and
polarizations decreased from about 8 minutes to zero for an incident index
, an exit index
, and a 45- degree angle of incidence. However, the rotations of the same films increased from about 16 minutes to a maximum of 30 minutes near 200 Å for
, and a 45-degree angle of incidence at the film surface. The corresponding Kerr figures of merit for
exhibited peaks about a decade larger than the values determined for
. Clearly, a simple increase of the incident index of refraction provides a significant enhancement of a magnetooptical signal. Analysis of the phenomenological magnetooptical equations for a two-surface thin-film structure gives satisfactory agreement with our results.Keywords
Iron films; Magnetic measurements; Magnetooptic Kerr effect; Glass; Iron; Kerr effect; Magnetooptic effects; Optical films; Optical interferometry; Optical polarization; Optical refraction; Substrates; Wavelength measurement;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1968.1066333
Filename
1066333
Link To Document