Ferromagnetic Resonance in Orientational Transition Conditions
Autor V.G. Shavrov, V.I. Shchegloven Limba Engleză Paperback – 4 oct 2024
This book examines magnetic resonance and ferromagnetic resonance under a wide variety of conditions to study physical properties of magnetodielectric materials. The authors explore the properties in various mediums that significantly complicate magnetic resonance and provide a summary of related advances obtained during the last two decades. It also covers the emergence of new branches of the spectrum and anomalous dependencies on the magnetic field.
Key Features:
- Reviews basic principles of the science of crystallographic symmetry and anisotropic solid-state properties
- Addresses the inhomogeneous nature of the distribution of the magnetization in the material being studied
- Explains the mathematic methods used in the calculation of anisotropic solids of a solid
- Provides the reader with a path to substitute electromagnetic waves when magnetostatic apparatus prove insufficient
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Specificații
ISBN-13: 9780367496043
ISBN-10: 0367496046
Pagini: 650
Ilustrații: 276
Dimensiuni: 156 x 234 mm
Greutate: 1.2 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
ISBN-10: 0367496046
Pagini: 650
Ilustrații: 276
Dimensiuni: 156 x 234 mm
Greutate: 1.2 kg
Ediția:1
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
Public țintă
AcademicCuprins
Introduction. 1. General properties of ferromagnetic resonance and orientational transitions (literature review). 2. Mathematical apparatus used in calculating ferromagnetic resonance. 3. Mathematical apparatus used when working with crystals of various symmetry. 4. Energy density of magnetic anisotropy. 5. Orientational transition in a magnetic medium. 6. Ferromagnetic resonance in plates with uniaxial and cubic anisotropy. 7. Ferromagnetic resonance in films with tips of axis of easy magnetization. 8. Ferromagnetic resonance in a composition environment consisting of anisotropic ferrite particles. 9. Precession of positions of equilibrium of magnetization in the conditions of orientational transitions. 10. Precession of the position of the equilibrium magnetization in an anisotropic medium. Bibliography. Index.
Descriere
This book explores magnetic resonance and ferromagnetic resonance under a wide variety of conditions to study physical properties of magnetodielectric material. Magnetostatic waves and the phenomena of ferromagnetic resonance in magnetodielectric media impact the creation of highly efficient analog signal-processing devices in the microwave range.