Ferromagnetic Resonance in Orientational Transition Conditions

Ferromagnetic Resonance in Orientational Transition Conditions

Shavrov, V.G.; Shcheglov, V.I.

Taylor & Francis Ltd

10/2024

630

Mole

9780367496043

15 a 20 dias

Descrição não disponível.
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.
magnetized ferrite films;magnetostatic waves;yttrium iron garnet (YIG);magnetodielectric environments;MSW device;broadband microwave receiver;ferromagnetic material;magnetodielectric material;Energy Density;Magnetization Vector;Ferromagnetic Resonance;Anisotropy Axis;Uniaxial Anisotropy;Anisotropy Field;Susceptibility Tensor;Barium Hexaferrite;Anisotropy Constant;Orientational Transition;Constant Field;Landau Lifshitz Equation;Oxy Plane;Anisotropy Energy Density;Demagnetization Field;Oxz Plane;Phase Transition Point;Coordinate System Oxyz;Axis Ox;Strong Field Approximation;Precession Period;IYG;Magnetic Anisotropy;Transition Matrix;Azimuthal Angle