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9780198855170

Magnetic Small-Angle Neutron Scattering A Probe for Mesoscale Magnetism Analysis

by
  • ISBN13:

    9780198855170

  • ISBN10:

    0198855176

  • Format: Hardcover
  • Copyright: 2021-06-01
  • Publisher: Oxford University Press

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Summary

Magnetic Small-Angle Neutron Scattering provides the first extensive treatment of magnetic small-angle neutron scattering (SANS). The theoretical background required to compute magnetic SANS cross sections and correlation functions related to long-wavelength magnetization structures is laid out. The concepts are scrutinized based on the discussion of experimental neutron data. Regarding prior background knowledge, some familiarity with the basic magnetic interactions and phenomena as well as scattering theory is desired.

Besides exposing the different origins of magnetic SANS, and furnishing the basics of the magnetic SANS technique in early chapters, a large part of the book is devoted to a comprehensive treatment of the continuum theory of micromagnetics, as it is relevant for the study of the elastic magnetic SANS cross section. Analytical expressions for the magnetization Fourier components allow to highlight the essential features of magnetic SANS and to analyze experimental data both in reciprocal, as well as in real space. Later chapters provide an overview on the magnetic SANS of nanoparticles and so-called complex systems (e.g., ferrofluids, magnetic steels, spin glasses and amorphous magnets). It is this subfield where major progress is expected to be made in the coming years, mainly via the increased usage of numerical micromagnetic simulations (Chapter 7), which is a very promising approach for the understanding of the magnetic SANS from systems exhibiting nanoscale spin inhomogeneity.

Author Biography


Andreas Michels, Associate Professor in Physics and Materials Science, University of Luxembourg

Professor Andreas Michels. Diploma (1995-1997) and PhD (1997-2001) in Physics at the University of Saarbr?cken. Postdoc (2001-2003) at Karlsruhe Institute of Technology and Paul Scherrer Institute (2003-2005). Lecturer at Universit?t Saarbr?cken (2005-2010), Habilitation (2008). Since 2010 Group Leader and Associate Professor for Physics and Materials Science at the University of Luxembourg.

Table of Contents


1. Introduction
2. Basics of SANS
3. Basics of Static Micromagnetism
4. Magnetic SANS of Bulk Ferromagnets
5. Magnetic SANS of Nanoparticles and Complex Systems
6. Real-Space Analysis
7. Micromagnetic Simulations
Appendices
A. Caveat on the separation of nuclear and magnetic SANS from unpolarized SANS data
B. Magnetic materials parameters
C. Fourier-Hankel-Abel cycle
D. Fourier transform of the local saturation magnetization in a material containing ferromagnetic spherical inclusions
E. Three and two-dimensional Fourier transforms in polar coordinates
F. Magnetic units
G. Fundamental constants
H. Glossary of symbols
References
Index

Supplemental Materials

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