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Anisotropy and Phase Diagrams
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Related lectures (45)
Magnetic anisotropy: fundamentals and applications
Explores magnetic anisotropy energy, orbital moments, bit magnetization, superparamagnetism, and atomic-scale engineering in nanostructures.
The Curie-Weiss Model: Overview and Applications
Covers the Curie-Weiss model, discussing its theoretical foundations and practical applications in physical systems.
Magnetic Interactions: Ferromagnetism & Exchange
Covers ferromagnetism, antiferromagnetism, and paramagnetism, explaining exchange interactions and magnetic domains.
Magnetic Ordering in Materials
Delves into magnetic ordering in materials, covering neglected spin interactions, Curie temperature, Neel temperature, and the Heisenberg Hamiltonian.
Magnetic Anisotropy: Basics and Applications
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Explores magnetic anisotropy fundamentals, temperature effects, and applications in modern technologies.
Gigahertz Spectroscopy Update
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Offers an update on gigahertz spectroscopy, including recent publications and project progress.
Magnetic Anisotropy in Ferromagnetic Materials
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Explores magnetic anisotropy in different ferromagnetic materials and discusses the magnetocrystalline anisotropy of permalloy and rare-earth magnets.
Anisotropy and Spin-Orbit Coupling
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Explores anisotropy in magnetic materials, spin-orbit coupling effects, and magnetization curves.
Soft Magnets: Properties and Applications
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Explores the optimization strategies and characteristics of soft magnetic materials for technical applications in modern technologies.
Anisotropy and Hard Magnets: Problems & Solutions
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Discusses anisotropy in ferromagnetic materials and the superimposition of orthogonal anisotropies.
Bloch vs Néel Walls: Magnetic Properties and Domain Wall Energy
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Compares Bloch and Néel walls in magnetic materials, discussing energy balance and domain wall properties.
Applications of Hard Magnets
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Explores the applications and benefits of hard magnets in modern technologies, emphasizing their compact design advantages.
Demagnetization Field: External vs Internal Fields
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Explores demagnetization field in non-ellipsoidal bodies, comparing external and internal fields and discussing magnetic energy and shape anisotropy.
Magnetoelastic Effects: Anisotropic Magnetostriction and Transducer Applications
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Explores anisotropic magnetostriction, stress-induced anisotropy, and smart magnetostrictive metals in transducer applications.
Phenomenological Description: Magnetic Anisotropy
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Explores the phenomenological description of magnetic anisotropy, including spin-orbit coupling effects and magnetization work.
Anisotropy and Hard Magnets
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Explores anisotropy, hard magnets, BHmax, and rare earth elements in magnetic materials.
Hysteresis Curves: M vs H_int
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Explains hysteresis curves, coercive fields, and the concept of a true permanent magnet.
Domain Walls in Magnetic Materials
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Explores domain walls in magnetic materials, covering energy considerations, magnetic properties of iron, cobalt, and nickel, and processes for domain reversal.
Nanoscale Magnetism
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Explores nanoscale magnetism, covering types of magnetism, magnetic domains, superparamagnetism, and applications in data storage.
Magnetic Materials: Elements, Fields, and Interactions
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Explores the magnetic periodic table, ferromagnets, antiferromagnets, magnetic fields, and Maxwell's equations in polarizable matter.
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