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Lecture
Ferromagnetic Resonance
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Related lectures (32)
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Exchange Interaction: Understanding Magnetic Properties
Covers exchange interaction's role in ferromagnetism and its dependence on interatomic distances and Coulomb forces.
Magnetic Hysteresis: Behavior and Loops
Covers magnetic hysteresis, coercive fields, and soft magnetic materials, including the history of coercive fields and interpreting hysteresis curves.
Anisotropy and Hard Magnets
Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Magneto-optical Kerr Effect: Fundamentals and Applications
Covers the fundamentals of the Magneto-optical Kerr Effect (MOKE) and its applications in ultrafast magnetization processes and magnetic optical spectroscopy.
Hard Magnetic Materials: Fabrication and Properties
Explores the fabrication and properties of hard magnetic materials, focusing on strategies for high coercivity and remanence.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Hysteresis Curves: M vs H_int
Explains hysteresis curves, coercive fields, and the concept of a true permanent magnet.
Ferromagnets and the Ising Model
Covers the Ising model, ferromagnetic materials, spins on a lattice, and spin correlations.
Ferromagnetism: Magnetic Properties
Explores the magnetic properties of ferromagnetic materials, including retention of magnetization and hysteresis cycles.
Dielectric and Magnetic Properties
Explores dielectric and magnetic properties of materials, including electrical conductivity, insulators, capacitors, and different types of magnetism.