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Magnetocrystalline anisotropy
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Related lectures (32)
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Phenomenological Description: Magnetic Anisotropy
Explores the phenomenological description of magnetic anisotropy, including spin-orbit coupling effects and magnetization work.
Phenomenological Description of Magnetocrystalline Anisotropy
Covers the phenomenon of magnetocrystalline anisotropy and its sensitivity to temperature in various materials.
Magnetic Anisotropy in Ferromagnetic Materials
Explores magnetic anisotropy in different ferromagnetic materials and discusses the magnetocrystalline anisotropy of permalloy and rare-earth magnets.
Materials Science of Magnetic Materials
Covers the materials science of magnetic materials, focusing on properties, concepts, and optimization for functional applications.
Magnetic Anisotropy: Basics and Applications
Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
Antiferromagnetic Resonance
Explores the spin-flop transition, susceptibility, and magnetic resonance in antiferromagnets.
Magnetic Anisotropy: Observations in Iron, Nickel, and Cobalt
Analyzes magnetization curves in iron, nickel, and cobalt to explain magnetic anisotropy.
Anisotropy and Spin-Orbit Coupling
Explores anisotropy in magnetic materials, spin-orbit coupling effects, and magnetization curves.
Anisotropy and Hard Magnets: Problems & Solutions
Discusses anisotropy in ferromagnetic materials and the superimposition of orthogonal anisotropies.
Quantum and Nanocomputing: Advanced Nanostructures
Explores advanced nanostructures in quantum and nanocomputing, covering domain-magnet logic, clock zones, FIB irradiation effects, and artificial nucleation centers.
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
Cubic Anisotropy in Magnetometry
Explores investigating cubic anisotropy in magnetometry through sample fabrication and frequency shift measurements.
Anisotropy and Phase Diagrams
Explores anisotropy measurement and phase diagram analysis in magnetic materials.
Soft Magnetic Materials: Fe-Si Alloys to Amorphous Alloys
Explores Fe-Si and Ni-Fe soft magnetic materials, discussing their properties, processing, and applications, as well as the benefits of tailored impurities.
Magnetic Anisotropy: Stress-induced Effects
Explores stress-induced anisotropy in magnetic materials and its effects on domain formation and magnetization.
Soft Magnets: Properties and Applications
Explores the optimization strategies and characteristics of soft magnetic materials for technical applications in modern technologies.
Magnetic Domains and Walls: Properties and Characteristics
Explores magnetic domains, domain walls, and their energy considerations in materials like iron, cobalt, and nickel.
Magnetic Domains and Walls
Explores magnetic domains and walls in ferromagnetic materials, discussing their formation, energy considerations, and domain configurations.
Anisotropy and Hard Magnets
Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Hysteresis Curves: M vs H_int
Explains hysteresis curves, coercive fields, and the concept of a true permanent magnet.
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