凝集体物質からの中性子散乱の原理<br>Principles of Neutron Scattering from Condensed Matter

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凝集体物質からの中性子散乱の原理
Principles of Neutron Scattering from Condensed Matter

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  • 製本 Hardcover:ハードカバー版/ページ数 512 p.
  • 言語 ENG
  • 商品コード 9780198862314
  • DDC分類 530.41

Full Description

Neutron scattering is arguably the most powerful technique available for looking inside materials and seeing what the atoms are doing. This textbook provides a comprehensive and up-to-date account of the many different ways neutrons are being used to investigate the behaviour of atoms and molecules in bulk matter. It is written in a pedagogical style, and includes many examples and exercises.

Every year, thousands of experiments are performed at neutron scattering facilities around the world, exploring phenomena in physics, chemistry, materials science, as well as in interdisciplinary areas such as biology, materials engineering, and cultural heritage. This book fulfils a need for a modern and pedagogical treatment of the principles behind the various different neutron techniques, in order to provide scientists with the essential formal tools to design their experiments and interpret the results.

The book will be of particular interest to researchers using neutrons to study the atomic-scale structure and dynamics in crystalline solids, simple liquids and molecular fluids by diffraction techniques, including small-angle scattering and reflectometry, and by spectroscopic methods, ranging from conventional techniques for inelastic and quasielastic scattering to neutron spin-echo and Compton scattering. A comprehensive treatment of magnetic neutron scattering is given, including the many and diverse applications of polarized neutrons.

Contents

1: Basic Concepts
2: Diffraction in the Static Approximation
3: Kinematical Theory of Scattering
4: The Interaction Potential
5: Nuclear Scattering
6: Magnetic Scattering - General Properties
7: Magnetic Diffraction
8: Magnetic Excitations
9: Neutron Optics
10: Practical Aspects of Neutron Scattering
A: Neutron Scattering Lengths and Cross-Sections
B: Mathematical Definitions
C: Quantum Mechanics, Atomic Physics, Magnetism
D: Linear Response Theory
References
Index
Free

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