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Dimensional Effects Resulting from a High Dielectric Constant Found in a Ferromagnetic Ferrite

Frank G. Brockman, P. H. Dowling, and Walter G. Steneck

  • Philips Laboratories, Inc., Irvington-on-Hudson, New York

Phys. Rev. 77, 85 – Published 1 January, 1950

DOI: https://doi.org/10.1103/PhysRev.77.85

Abstract

A variety of a ferromagnetic ferrite is shown to have dielectric properties corresponding to a dielectric constant of the order of 105. Coupled with a magnetic permeability of about 103, this leads to dimensional resonance effects such that the apparent permeability of a core whose section is 2.5×1.25 cm reduces to very low values in the region of 2 megacycles. An apparent anomaly exists in the dielectric behavior in the vicinity of the magnetic Curie point. A general theory of dimensional effects encountered in measuring magnetic and dielectric constants is developed. This theory is based on the geometry of the infinite slab. When the theory is applied to the ferrite under study, a residual variation of the permeability with frequency remains, which may be explained by magnetic resonance. The theory accounts adequately for the dielectric effects at the Curie point.

References (9)

  1. (a) J. L. Snoek, New Developments in Ferromagnetic Materials (Elsevier Publishing Co., New York, 1947) (b) Philips Tech. Rev. 8, 353 (1946) (c) E. J. W. Verwey, 9, 46 (1947) (d) Verwey, Haayman, and Heilman, 9, 185 (1947) (e) E. J. W. Verwey and E. L. Heilman, J. Chem. Phys. 15, 174 (1947) (f) Verwey, Haayman, and Romeyn, Philips Tech. Rev. 15, 181 (1947)
  2. D. Polder, forthcoming publication
  3. J. L. Snoek, Physica 14, 207 (1948)
  4. Omitted endnote

  5. Omitted endnote

  6. K. L. Scott, Proc. I.R.E. 18, 1750 (1930)
  7. Omitted endnote

  8. (Kennelly, Tables of Complex Hyperbolic and Circular Functions (Harvard University Press, Cambridge, 1914).)
  9. C. G. Koops of the Philips Laboratory, Eindhoven, private communication

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