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Magnetic Oxides [electronic resource] /by Gerald F. Dionne.

by Dionne, Gerald F [author.]; SpringerLink (Online service).
Material type: materialTypeLabelBookPublisher: Boston, MA : Springer US, 2009.Description: X, 500p. 237 illus. online resource.ISBN: 9781441900548.Subject(s): Magnetism | Microwaves | Optical materials | Materials Science | Optical and Electronic Materials | Magnetism, Magnetic Materials | Microwaves, RF and Optical EngineeringDDC classification: 620.11295 | 620.11297 Online resources: Click here to access online
Contents:
Introductory Magnetism -- Magnetic Ions in Oxides -- Magnetic Exchange in Oxides -- Ferrimagnetism -- Anisotropy and Magnetoelastic Properties -- Electromagnetic Properties -- Magneto-Optical Properties -- Spin Transport Properties.
In: Springer eBooksSummary: Magnetic Oxides offers a cohesive up-to-date introduction to magnetism in oxides. Emphasizing the physics and chemistry of local molecular interactions essential to the magnetic design of small structures and thin films, this volume provides a detailed view of the building blocks for new magnetic oxide materials already advancing research and development of nano-scale technologies. Clearly written in a well-organized structure, readers will find a detailed description of the properties of magnetic oxides through the prism of local interactions as an alternative to collective electron concepts that are more applicable to metals and semiconductors. Researchers will find Magnetic Oxides a valuable reference.
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Introductory Magnetism -- Magnetic Ions in Oxides -- Magnetic Exchange in Oxides -- Ferrimagnetism -- Anisotropy and Magnetoelastic Properties -- Electromagnetic Properties -- Magneto-Optical Properties -- Spin Transport Properties.

Magnetic Oxides offers a cohesive up-to-date introduction to magnetism in oxides. Emphasizing the physics and chemistry of local molecular interactions essential to the magnetic design of small structures and thin films, this volume provides a detailed view of the building blocks for new magnetic oxide materials already advancing research and development of nano-scale technologies. Clearly written in a well-organized structure, readers will find a detailed description of the properties of magnetic oxides through the prism of local interactions as an alternative to collective electron concepts that are more applicable to metals and semiconductors. Researchers will find Magnetic Oxides a valuable reference.

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