Written by two well-known researchers in the field, this useful reference takes an applied approach to high frequency processes including oscillations and waves in ferromagnets, antiferromagnets, and ferrimagnets. Problems evaluated include ferromagnetic and antiferromagnetic resonances, spin waves, nonlinear processes, and high frequency manifestations of interactions between the magnetic system and other systems of magnetically ordered substances as elastic waves and charge carriers. Unlike previous monographs on this subject, which are highly theoretical and written for very advanced…mehr
Written by two well-known researchers in the field, this useful reference takes an applied approach to high frequency processes including oscillations and waves in ferromagnets, antiferromagnets, and ferrimagnets. Problems evaluated include ferromagnetic and antiferromagnetic resonances, spin waves, nonlinear processes, and high frequency manifestations of interactions between the magnetic system and other systems of magnetically ordered substances as elastic waves and charge carriers.
Unlike previous monographs on this subject, which are highly theoretical and written for very advanced readers, this book requires only an average college background in mathematics and experimental physics. It will be a valuable addition to the library of engineers and scientists in research and development for communications applications, and scientists interested in nonlinear magnetic phenomena. It also serves as an excellent introduction to the topic for newcomers in the field.
Magnetization Oscillations and Waves not only presents results but also shows readers how to obtain them; most formulas are derived with so many details that readers can reproduce them. The book includes many summaries and tables and detailed references to significant work in the area by European researchers.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
A.G. Gurevich, Ph.D., D.Sci. Chief Researcher and Professor, Magnetic Laboratory, Ioffe Physico-Technical Institute, St. Petersburg, Russia. G.A. Melkov, Ph.D., D.Sci. Professor, Dean of Department, Radiophysical Shevchenko Kiev National University Kiev, Ukraina
Inhaltsangabe
Isotropic Ferromagnet Magnetized to Saturation. Anisotropic Ferromagnet. Antiferromagnets and Ferrites. Fundamentals of Electrodynamics of Gyrotropic Media. Waveguides and Resonators with Gyrotropic Media. Microwave Ferrite Devices. Magnetostatic Waves and Oscillations. Spin Waves. Magnetic Oscillations and Waves in Unsaturated Ferromagnet. Nonlinear Oscillations of Magnetization. Parametric Excitation of Magnetic Oscillations and Waves. Spin-Spin Relaxation. Magnetoelastic Coupling. Ionic Anisotropy and Relaxation. Interaction of Magnetic Oscillations and Waves with Charge Carriers. Appendices. Bibliography. Index.Summary of the Contents: 1. Isotropic ferromagnet magnetized to saturation 2. Anisotropic ferromagnet 3. Antiferromagnets and ferrites 4. Fundamentals of electrodynamics of gyrotropic media 5. Waveguides and resonators with gyrotropic media. Microwave ferrite devices 6. Magnetostatic waves and oscillations 7. Spin waves 8. Magnetic oscillations and waves in unsaturated ferromagnet 9. Nonlinear oscillations of magnetization 10. Parametric excitation of magnetic oscillations and waves 11. Spin-spin relaxation 12. Magnetoelastic coupling 13. Ionic anisotropy and relaxation 14. Interaction of magnetic oscillations and waves with charge carries
Isotropic Ferromagnet Magnetized to Saturation. Anisotropic Ferromagnet. Antiferromagnets and Ferrites. Fundamentals of Electrodynamics of Gyrotropic Media. Waveguides and Resonators with Gyrotropic Media. Microwave Ferrite Devices. Magnetostatic Waves and Oscillations. Spin Waves. Magnetic Oscillations and Waves in Unsaturated Ferromagnet. Nonlinear Oscillations of Magnetization. Parametric Excitation of Magnetic Oscillations and Waves. Spin-Spin Relaxation. Magnetoelastic Coupling. Ionic Anisotropy and Relaxation. Interaction of Magnetic Oscillations and Waves with Charge Carriers. Appendices. Bibliography. Index.Summary of the Contents: 1. Isotropic ferromagnet magnetized to saturation 2. Anisotropic ferromagnet 3. Antiferromagnets and ferrites 4. Fundamentals of electrodynamics of gyrotropic media 5. Waveguides and resonators with gyrotropic media. Microwave ferrite devices 6. Magnetostatic waves and oscillations 7. Spin waves 8. Magnetic oscillations and waves in unsaturated ferromagnet 9. Nonlinear oscillations of magnetization 10. Parametric excitation of magnetic oscillations and waves 11. Spin-spin relaxation 12. Magnetoelastic coupling 13. Ionic anisotropy and relaxation 14. Interaction of magnetic oscillations and waves with charge carries
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