DocumentCode
957102
Title
Comparison of rare earth relaxation effects in YIG from perpendicular and parallel-pump measurements
Author
Standley, K.J. ; Storey, B.E. ; Wood, M.J. ; Scotter, D.G. ; Miller, N.D.J.
Author_Institution
Carnegie Laboratory of Physics, University of Dundee
Volume
11
Issue
5
fYear
1975
fDate
9/1/1975 12:00:00 AM
Firstpage
1250
Lastpage
1252
Abstract
Samples of polycrystalline YIG have been doped at various concentrations with terbium and dysprosium. The effects on spin wave linewidth, ΔHk , effective linewidth, W, and resonance field shift, S, have been measured and compared. An empirical relation between the spin wave linewidth, the spin wave vector, and doping concentration is given with rare earth dependent constants. It has been observed that in the low field region the behaviour of W is consistent with coupling to high k spin waves (wavelength
m). Almost exactly the same behaviour has been observed in the high field region. Within the degenerate region the relative effects of the two rare earths were reduced. No changes in either the shape or magnitude of the S behaviour were observed. The conclusions are that the rare earth doping does not affect the degenerate coupling and that within the degenerate region both rare earth relaxation and polycrystalline inhomogeneity relaxation are effective. It is suggested that the high and low field behaviour of W can be explained if there exist localised, near atomic scale inhomogeneities producing coupling to very high k vector spin waves. More detailed quantitative analysis is required to verify this.
m). Almost exactly the same behaviour has been observed in the high field region. Within the degenerate region the relative effects of the two rare earths were reduced. No changes in either the shape or magnitude of the S behaviour were observed. The conclusions are that the rare earth doping does not affect the degenerate coupling and that within the degenerate region both rare earth relaxation and polycrystalline inhomogeneity relaxation are effective. It is suggested that the high and low field behaviour of W can be explained if there exist localised, near atomic scale inhomogeneities producing coupling to very high k vector spin waves. More detailed quantitative analysis is required to verify this.Keywords
Relaxation processes; YIG materials/devices; Doping; Equations; Garnets; High K dielectric materials; High-K gate dielectrics; Iron; Resonance; Shape; Wavelength measurement; Yttrium;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.1975.1058915
Filename
1058915
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