Handbook of Spin Transport and Magnetism

Author:   Evgeny Y Tsymbal (Charles Bessey Professor of Physics, University of Nebraska-Lincoln) ,  Evgeny Y Tsymbal (Charles Bessey Professor of Physics, University of Nebraska-Lincoln) ,  Igor Zutic (State University of New York, Buffalo)
Publisher:   CRC Press
ISBN:  

9781322611297


Pages:   797
Publication Date:   01 January 2011
Format:   Electronic book text
Availability:   In stock   Availability explained
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Handbook of Spin Transport and Magnetism


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Overview

In the past several decades, the research on spin transport and magnetism has led to remarkable scientific and technological breakthroughs, including Albert Fert and Peter Grunberg s Nobel Prize-winning discovery of giant magnetoresistance (GMR) in magnetic metallic multilayers. Handbook of Spin Transport and Magnetism provides a comprehensive, balanced account of the state of the art in the field known as spin electronics or spintronics. It reveals how key phenomena first discovered in one class of materials, such as spin injection in metals, have been revisited decades later in other materials systems, including silicon, organic semiconductors, carbon nanotubes, graphene, and carefully engineered nanostructures. The first section of the book offers a historical and personal perspective of the field written by Nobel Prize laureate Albert Fert. The second section addresses physical phenomena, such as GMR, in hybrid structures of ferromagnetic and normal metals. The third section discusses recent developments in spin-dependent tunneling, including magnetic tunnel junctions with ferroelectric barriers. In the fourth section, the contributors look at how to control spin and magnetism in semiconductors. In the fifth section, they examine phenomena typically found in nanostructures made from metals, superconductors, molecular magnets, carbon nanotubes, quantum dots, and graphene. The final section covers novel spin-based applications, including advanced magnetic sensors, nonvolatile magnetoresistive random access memory, and semiconductor spin-lasers. The techniques and materials of spintronics have rapidly evolved in recent years, leading to vast improvements in hard drive storage and magnetic sensing. With extensive cross-references between chapters, this seminal handbook provides a complete guide to spin transport and magnetism across various classes of materials and structures.

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Author:   Evgeny Y Tsymbal (Charles Bessey Professor of Physics, University of Nebraska-Lincoln) ,  Evgeny Y Tsymbal (Charles Bessey Professor of Physics, University of Nebraska-Lincoln) ,  Igor Zutic (State University of New York, Buffalo)
Publisher:   CRC Press
Imprint:   CRC Press
ISBN:  

9781322611297


ISBN 10:   1322611297
Pages:   797
Publication Date:   01 January 2011
Audience:   General/trade ,  General
Format:   Electronic book text
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

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Reviews

This handbook is a timely, up-to-date review of the intricate relationship between both carrier and spin transport and magnetism in semiconductors and metals. The chapters are written by leading experts and will undoubtedly serve as a valuable reference for all workers in the field of spintronics. Professor Stephan von Molnar, Florida State University [It] provides a wide perspective on spin-polarized electron transport in the bulk of solids, at interfaces, and in microstructures a highly useful source for researchers, engineers, and students working in this fascinating and technologically important field. Emmanuel Rashba, Harvard University


Author Information

Evgeny Y. Tsymbal is a Charles Bessey Professor of Physics and the director of the Materials Research Science and Engineering Center at the University of Nebraska Lincoln (UNL). Dr. Tsymbal is a fellow of the American Physical Society, a fellow of the Institute of Physics (UK), and a recipient of UNL s Outstanding Research and Creativity Award. His research in computational materials science focuses on the understanding of fundamental properties of advanced ferromagnetic and ferroelectric nanostructures and materials relevant to nanoelectronics and spintronics. Igor uti is an associate professor of physics at the University at Buffalo (State University of New York). Dr. uti has been a recipient of the National Science Foundation CAREER Award, the National Research Council/American Society for Engineering Education Postdoctoral Research Award, and the National Research Council Fellowship. His research encompasses spin transport, magnetism, spintronics, and superconductivity.

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