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Study of microwave absorptions in M-hexaferrites for anti-radar applications*

Published online by Cambridge University Press:  15 September 1999

O. Dubrunfaut*
Affiliation:
LDIM EA 253/DSPT4/MENRT, Paris VI, 4 place Jussieu, 75252 Paris Cedex 05, France
S. Zouhdi
Affiliation:
LDIM EA 253/DSPT4/MENRT, Paris VI, 4 place Jussieu, 75252 Paris Cedex 05, France
A. Fourrier-Lamer
Affiliation:
LDIM EA 253/DSPT4/MENRT, Paris VI, 4 place Jussieu, 75252 Paris Cedex 05, France
E. Brando
Affiliation:
LMGP (URA 1109 du CNRS), ENS de Physique de Grenoble, 38402 St Martin-d'Hères Cedex, France
H. Vincent
Affiliation:
LMGP (URA 1109 du CNRS), ENS de Physique de Grenoble, 38402 St Martin-d'Hères Cedex, France
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Abstract

Microwave absorption of sintered M-type hexaferrites (BaFe12−2xRuxZnxO19) is investigated as a function of the substitution ratio x. The substitution with Ru and Zn has been shown to reduce the axial anisotropy of the BaM-hexaferrite which becomes in-plane for x ≈ 0.4. Large saturation magnetization and in-plane magnetic anisotropy allow to obtain high permeability values at microwave frequencies. To study the behavior of the ferrites at these frequencies, the complex constitutive parameters ε and μ (respectively permittivity and permeability) are simultaneously measured from 0.5 up to 18 GHz using a coaxial technique. Two absorption phenomena are observed: the ferrimagnetic resonance and the domain wall relaxation; the latter is studied with the Globus' model. Anti-radar applications are also mentioned.

Keywords

Type
Research Article
Copyright
© EDP Sciences, 1999

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Footnotes

*

This paper was presented at “Journées Oxydes Magnétiques” held at Dijon the March 24–26, 1998.

References

Lebourgeois, R., Le Fur, C., Labeyrie, M., Paté, M., Ganne, J.P., J. Magn. Magn. Mat. 160, 329 (1996). CrossRef
H. Pascard, Journée discrétion radar, DRET, Paris, 1993.
Tauber, A., Kohn, J.A., Savage, R.O., J. Appl. Phys. 14, 1265 (1963). CrossRef
Allegri, P., Autissier, D., Taffary, T., J. Phys. IV France 8, 397 (1998). CrossRef
Autissier, D., Podembski, A., Jacquiod, C., J. Phys. IV France 7, 409 (1997). CrossRef
Brard, C., Taffary, T., Autissier, D., Jurion, F., J. Phys. IV France 8, 401 (1998). CrossRef
de Bitetto, D.J., J. Appl. Phys. 35, 3482 (1964). CrossRef
Vincent, H., Sugg, B., Lefez, V., Bochu, B., Boursier, D., Chaudouet, P., J. Magn. Magn. Mat. 101, 170 (1991). CrossRef
E. Brando, Ph.D. thesis, I.N.P. Grenoble, 1995.
Weir, W.B., IEEE 62, 33 (1974). CrossRef
Globus, A., J. Phys. France 38, C1 (1977).
B. Lax, K.J. Button, Microwave Ferrites and Ferrimagnetics (Mc Graw-Hill, New-York, 1962).
Fox, A.G., Proc. Inst. Electr. Eng. B 104, 371 (1957).
Néel, L., Pauthenet, R., Giron, V.S., J. Appl. Phys. 31, 27 (1960). CrossRef
Weile, D.S., Michielsen, E., IEEE Trans. Ant. Propag. 45, 343 (1997). CrossRef