Published January 1976 | Version v1
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Neutron depolarization in compressed ferrite powders

Description

The polarization change of a polarized neutron beam after transmission through a partly magnetized ferromagnetic material can be described by a (3x3) depolarization matrix. This matrix can be expressed in terms of domain quantities such as the reduced mean magnetization M, the mean domain size delta and the mean square direction cosinus γsub(y) of the inner magnetization within the domain, and can be used for measuring magnetic properties of ferromagnetic materials. In the underlying depolarization theory it is assumed that no correlations exist between the direction of the spontaneous magnetization Bs in neighbouring domains, and between the direction of Bs and the individual domain sizes. In order to extend the measuring method for ferromagnetic materials, measurements have been made with different compressed ferrite powders assuming that the mean domain size is equal to the mean particle size. The neutron depolarization matrix is measured as a function of an alternative external magnetic field and interpreted in terms of m, γsub(y), and delta. The possibilities and limitations of the measuring method are discussed

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MF available from INIS under the Report Number.

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Additional details

Additional titles

Original title (Dutch)
Neutronendepolarisatie in geperste ferrietpoeders

Publishing Information

Imprint Pagination
12 p.
Report number
IRI--132-76-01

Optional Information

Notes
7 figs., 3 refs., 1 table.