Covering basic physical concepts, experimental methods, and applications, this book is an indispensable text on the fascinating science of magnetism, and an invaluable source of practical reference data. Accessible, authoritative, and assuming undergraduate familiarity with vectors, electromagnetism and quantum mechanics, this textbook is well suited to graduate courses. Emphasis is placed on practical calculations and numerical magnitudes - from nanoscale to astronomical scale - focussing on modern applications, including permanent magnet structures and spin electronic devices. Each self-contained chapter begins with a summary, and ends with exercises and further reading. The book is thoroughly illustrated with over 600 figures to help convey concepts and explain ideas clearly. Easily digestible tables and data sheets provide a wealth of useful information on magnetic properties. The thirty-eight principal magnetic materials, and many more related compounds, are treated in detail.
Sprache
Verlagsort
Zielgruppe
Für höhere Schule und Studium
Produkt-Hinweis
Illustrationen
Worked examples or Exercises; Printed music items
Maße
Höhe: 246 mm
Breite: 189 mm
Dicke: 34 mm
Gewicht
ISBN-13
978-1-108-71751-9 (9781108717519)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Klassifikation
J. M. D. Coey leads the Magnetism and Spin Electronics group at Trinity College, Dublin, where he is Erasmus Smith's Professor of Natural and Experimental Philosophy. An authority on magnetism and its applications, he has been awarded the Gold Medal of the Royal Irish Academy and the Charles Chree Medal of the Institute of Physics for his work on magnetic materials.
Autor*in
Trinity College Dublin
1. Introduction; 2. Magnetostatics; 3. Magnetism of electrons; 4. Magnetism of localized electrons on the atom; 5. Ferromagnetism and exchange; 6. Antiferromagnetism and other magnetic order; 7. Micromagnetism, domains and hysteresis; 8. Nanoscale magnetism; 9. Magnetic resonance; 10. Experimental methods; 11. Magnetic materials; 12. Applications of soft magnets; 13. Applications of hard magnets; 14. Spin electronics and magnetic recording; 15. Special topics; Appendixes; Index.