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Advanced Magnetic Nanostructures [Hardcover]

D.J. Sellmyer (Editor), Ralph Skomski (Editor)

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Book Description

December 20, 2005 0387233091 978-0387233093 1
Advanced magnetic nanostructures is an emerging field in magnetism and nanotechnology, but the literature consists of a rich variety of original papers and parts of reviews and books whose scope is comparatively broad. This calls for a book with specific emphasis on state-of-the-art synthetic methods for fabricating, characterizing and theoretically modeling new magnetic nanostructures. This book is intended to provide a comprehensive overview of the present state of the field. Leading researchers world-wide have contributed a survey of their special ties to guide the reader through the exploding literature in nanomagnetic structures. The focus is on deliberately structured nanomagnets. It includes cluster assembled, self-organized and patterned thin films but excludes, for example, multilayered thin films. We target both industrial and academic researchers in magnetism and related areas, such as nanotechnology, materials science, and theoretical solid-state physics.

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From the Back Cover

Advanced Magnetic Nanostructures is devoted to the fabrication, characterization, experimental investigation, theoretical understanding, and utilization of advanced magnetic nanostructures. Focus is on various types of 'bottom-up' and 'top-down' artificial nanostructures, as contrasted to naturally occurring magnetic nanostructures, such as iron-oxide inclusions in magnetic rocks, and to structures such as perfect thin films. Chapter 1 is an introduction into some basic concepts, such as the definitions of basic magnetic quantities. Chapters 2-4 are devoted to the theory of magnetic nanostructures, Chapter 5 deals with the characterization of the structures, and Chapters 6-10 are devoted to specific systems. Applications of advanced magnetic nanostructures are discussed in Chapters11-15 and, finally, the appendix lists and briefly discusses magnetic properties of typical starting materials. Industrial and academic researchers in magnetism and related areas such as nanotechnology, materials science, and theoretical solid-state physics will find this book a valuable resource.

About the Author

David J. Sellmyer was educated at the University of Illinois and Michigan State University, where he received B.S. and Ph.D. degrees in Physics. He was Assistant and Associate Professor of Materials Science at MIT, before moving to the University of Nebraska in 1972. He served two terms as Chairman of Physics, and is now George Holmes Distinguished Professor and Director of the Center for Materials Research and Analysis and an NSF Materials Research Science and Engineering Center. He has published more than 370 articles and reviews in the areas of electronic structure and magnetism in metallic compounds and alloys, random magnetism and phase transitions in magnetic glasses, magnetic properties of rare earth-iron permanent-magnet materials, and magnetism and magneto-optics of cluster-assembled and self-assembled nanostructures. Ralph Skomski was educated at the Technische Hochschule Merseburg and Technische Universität Dresden, where he received Dipl.-phys. and Ph.D. degrees. In 1991, he became a postdoc at Trinity College Dublin, and 1995 to 1997 he was a postdoctoral researcher at Max-Planck-Institut für Mikrostrukturphysik in Halle. He then moved to Lincoln and is now a Research Associate Professor at the University of Nebraska. His research interests include model calculations in the areas of permanent magnets and magnetic nanostructures and are characterized by a close collaboration with experimentalist, engineers, and theorists focusing on numerical methods. He has published more than 100 contributed and invited papers and reviews, mostly on various topics in magnetism, and one book, "Permanent Magnetism" by R. Skomski and J. M. D. Coey.

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
molecular nanomagnets, permanent magnetism, ultrathin magnetic structures, hard nanostructures, spintronic transducers, hole digging method, residual amorphous phase, remanence enhancement, nanocrystalline soft magnetic alloys, magnetic softness, thermal activation effects, remanence ratio, magnetic nanostructures, field rise time, interatomic exchange, random anisotropy model, nanoparticle superlattices, magnetic targeting, exchange stiffness, cluster films, structural correlation lengths, soft magnetic properties, coherent rotation, patterned media, interference lithography
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Nanomagnetic Models, New York, Hard-Magnetic Nanostructures, Patterned Nanomagnetic Films, Media For Extremely High Density Recording, Cluster-Assembled Nanocomposites, Spin-Polarized Electronic Structure, Nanomagnetic Simulations, Self-Assembled Nanomagnets, University Press, Solid State Commun, Academic Press, Scripta Mater, Solid State Physics, Kluwer Academic Publishers, Nature Mater, Physics of Ferromagnetism, Handbook of Magnetic Materials, The Physics of Ultra-High-Density Magnetic Recording, Grenoble Cedex, Dynamic Effects, Magnetic Glasses, Rare-Earth Iron Permanent Magnets, Stoner Wohlfarth, Levy Yeyati
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